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对口部缺失面孔中眼睛的早期敏感性增加:支持早期面部加工的LIFTED模型。

Increased Early Sensitivity to Eyes in Mouthless Faces: In Support of the LIFTED Model of Early Face Processing.

作者信息

Itier Roxane J, Preston Frank

机构信息

Department of Psychology, University of Waterloo, 200 University Ave W, Waterloo, ON, N2L 3G1, Canada.

出版信息

Brain Topogr. 2018 Nov;31(6):972-984. doi: 10.1007/s10548-018-0663-6. Epub 2018 Jul 9.

Abstract

The N170 ERP component is a central neural marker of early face perception usually thought to reflect holistic processing. However, it is also highly sensitive to eyes presented in isolation and to fixation on the eyes within a full face. The lateral inhibition face template and eye detector (LIFTED) model (Nemrodov et al. in NeuroImage 97:81-94, 2014) integrates these views by proposing a neural inhibition mechanism that perceptually glues features into a whole, in parallel to the activity of an eye detector that accounts for the eye sensitivity. The LIFTED model was derived from a large number of results obtained with intact and eyeless faces presented upright and inverted. The present study provided a control condition to the original design by replacing eyeless with mouthless faces, hereby enabling testing of specific predictions derived from the model. Using the same gaze-contingent approach, we replicated the N170 eye sensitivity regardless of face orientation. Furthermore, when eyes were fixated in upright faces, the N170 was larger for mouthless compared to intact faces, while inverted mouthless faces elicited smaller amplitude than intact inverted faces when fixation was on the mouth and nose. The results are largely in line with the LIFTED model, in particular with the idea of an inhibition mechanism involved in holistic processing of upright faces and the lack of such inhibition in processing inverted faces. Some modifications to the original model are also proposed based on these results.

摘要

N170事件相关电位成分是早期面部感知的一种核心神经标志物,通常被认为反映整体加工过程。然而,它对单独呈现的眼睛以及全脸中对眼睛的注视也高度敏感。侧向抑制面部模板和眼睛检测器(LIFTED)模型(Nemrodov等人,《神经影像学》97:81 - 94,2014年)整合了这些观点,提出了一种神经抑制机制,该机制在感知上将特征整合为一个整体,同时还有一个解释眼睛敏感性的眼睛检测器的活动。LIFTED模型源自大量使用正立和倒立的完整面部及无眼面部所获得的结果。本研究通过用无嘴面部替代无眼面部为原始设计提供了一个对照条件,从而能够对该模型得出的具体预测进行测试。使用相同的注视依赖方法,无论面部朝向如何,我们都复制了N170对眼睛的敏感性。此外,当在正立面部中注视眼睛时,与完整面部相比,无嘴面部的N170更大,而当注视嘴和鼻子时,倒立的无嘴面部比完整倒立面部引发的波幅更小。这些结果在很大程度上与LIFTED模型一致,特别是与涉及正立面部整体加工的抑制机制以及倒立面部加工中缺乏这种抑制的观点一致。基于这些结果,还对原始模型提出了一些修改建议。

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