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对面部运动的事件相关α波抑制

Event-related alpha suppression in response to facial motion.

作者信息

Girges Christine, Wright Michael J, Spencer Janine V, O'Brien Justin M D

机构信息

Department of Psychology, Brunel University, London, United Kingdom.

出版信息

PLoS One. 2014 Feb 19;9(2):e89382. doi: 10.1371/journal.pone.0089382. eCollection 2014.

Abstract

While biological motion refers to both face and body movements, little is known about the visual perception of facial motion. We therefore examined alpha wave suppression as a reduction in power is thought to reflect visual activity, in addition to attentional reorienting and memory processes. Nineteen neurologically healthy adults were tested on their ability to discriminate between successive facial motion captures. These animations exhibited both rigid and non-rigid facial motion, as well as speech expressions. The structural and surface appearance of these facial animations did not differ, thus participants decisions were based solely on differences in facial movements. Upright, orientation-inverted and luminance-inverted facial stimuli were compared. At occipital and parieto-occipital regions, upright facial motion evoked a transient increase in alpha which was then followed by a significant reduction. This finding is discussed in terms of neural efficiency, gating mechanisms and neural synchronization. Moreover, there was no difference in the amount of alpha suppression evoked by each facial stimulus at occipital regions, suggesting early visual processing remains unaffected by manipulation paradigms. However, upright facial motion evoked greater suppression at parieto-occipital sites, and did so in the shortest latency. Increased activity within this region may reflect higher attentional reorienting to natural facial motion but also involvement of areas associated with the visual control of body effectors.

摘要

虽然生物运动既包括面部运动也包括身体运动,但人们对面部运动的视觉感知知之甚少。因此,我们研究了α波抑制,因为功率降低被认为除了反映注意力重新定向和记忆过程外,还反映视觉活动。对19名神经健康的成年人进行了连续面部运动捕捉辨别能力测试。这些动画展示了刚性和非刚性面部运动以及言语表情。这些面部动画的结构和表面外观没有差异,因此参与者的判断完全基于面部运动的差异。对直立、方向倒置和亮度倒置的面部刺激进行了比较。在枕叶和顶枕叶区域,直立面部运动会引起α波短暂增加,随后显著降低。从神经效率、门控机制和神经同步的角度对这一发现进行了讨论。此外,枕叶区域每种面部刺激引起的α波抑制量没有差异,这表明早期视觉处理不受操作范式的影响。然而,直立面部运动在顶枕叶部位引起更大的抑制,且潜伏期最短。该区域内活动增加可能反映了对自然面部运动更高的注意力重新定向,也可能涉及与身体效应器视觉控制相关的区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6343/3929715/906a8100fa8d/pone.0089382.g001.jpg

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