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A multimodal investigation of dynamic face perception using functional magnetic resonance imaging and magnetoencephalography

机译:利用磁共振成像和脑磁图进行动态面部感知的多模态研究

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摘要

Motion is an important aspect of face perception that has been largely neglected to date. Many of the established findings are based on studies that use static facial images, which do not reflect the unique temporal dynamics available from seeing a moving face. In the present thesis a set of naturalistic dynamic facial emotional expressions was purposely created and used to investigate the neural structures involved in the perception of dynamic facial expressions of emotion, with both functional Magnetic Resonance Imaging (fMRI) and Magnetoencephalography (MEG). Through fMRI and connectivity analysis, a dynamic face perception network was identified, which is demonstrated to extend the distributed neural system for face perception (Haxby et al.,2000). Measures of effective connectivity between these regions revealed that dynamic facial stimuli were associated with specific increases in connectivity between early visual regions, such as inferior occipital gyri and superior temporal sulci, along with coupling between superior temporal sulci and amygdalae, as well as with inferior frontal gyri. MEG and Synthetic Aperture Magnetometry (SAM) were used to examine the spatiotemporal profile of neurophysiological activity within this dynamic face perception network. SAM analysis revealed a number of regions showing differential activation to dynamic versus static faces in the distributed face network, characterised by decreases in cortical oscillatory power in the beta band, which were spatially coincident with those regions that were previously identified with fMRI. These findings support the presence of a distributed network of cortical regions that mediate the perception of dynamic facial expressions, with the fMRI data providing information on the spatial co-ordinates paralleled by the MEG data, which indicate the temporal dynamics within this network. This integrated multimodal approach offers both excellent spatial and temporal resolution, thereby providing an opportunity to explore dynamic brain activity and connectivity during face processing.
机译:迄今为止,运动是面部感知的重要方面,至今仍被忽略。许多已建立的发现是基于使用静态面部图像的研究,这些图像不能反映出看到移动的面部时可获得的独特的时间动态。本文以功能性磁共振成像(fMRI)和磁脑电图(MEG)为目标,创建了一组自然主义的动态面部表情,并用于研究涉及动态面部表情感知的神经结构。通过功能磁共振成像和连通性分析,确定了一个动态的面部感知网络,这证明可以扩展用于面部感知的分布式神经系统(Haxby等,2000)。这些区域之间有效连接的度量表明,动态面部刺激与早期视觉区域(例如枕下回和颞上沟)之间的连通性的特定增加相关,以及颞上沟和杏仁核之间的耦合以及额下前额gyri。 MEG和合成孔径磁强计(SAM)用于检查该动态面部感知网络中神经生理活动的时空分布。 SAM分析揭示了许多区域,这些区域显示了分布式面部网络中动态面部与静态面部的差异激活,其特征在于β波段的皮质振荡能力下降,这些区域在空间上与先前通过fMRI识别的区域重合。这些发现支持介导动态面部表情感知的皮质区域分布网络的存在,fMRI数据提供了与MEG数据平行的空间坐标的信息,这表明该网络内的时间动态。这种集成的多模式方法提供了出色的空间和时间分辨率,从而提供了在面部处理过程中探索动态大脑活动和连通性的机会。

著录项

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    Foley Elaine;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 English
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