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研究中发现,僵硬的面部运动有助于在结构编码阶段整体加工同种族面孔。

Rigid facial motion at study facilitates the holistic processing of own-race faces during the structural encoding stage.

机构信息

School of Psychology, Shandong Normal University, Jinan 250358, China.

School of Psychology, Shandong Normal University, Jinan 250358, China.

出版信息

Int J Psychophysiol. 2024 Sep;203:112407. doi: 10.1016/j.ijpsycho.2024.112407. Epub 2024 Jul 29.

Abstract

Holistic processing is a fundamental element of face-recognition studies. Some behavioral studies have investigated the impact of rigid facial motion on holistic face processing, yet it is still unclear how rigid motion affects the time course of holistic face processing for different face races. The current study investigated this issue, using the composite face effect (CFE) as a direct measure of holistic processing. Participants were asked to match the identity of the top half of a static composite face with the study face during the test stage, where the study face was either static or rigidly-moving. ERP results showed that rigidly-moving study faces elicited a larger CFE relative to static study faces in the N170 component when recognizing own-race faces. The amplitude of P1, N170 and P2 components indicated that rigid motion facilitated holistic face processing, with differences observed between the hemispheres over time. Specifically, the CFE was only observed after exposure to rigidly-moving faces in the P1 and P2 components of the right hemisphere. Additionally, a greater CFE was observed following exposure to rigidly-moving faces compared to static faces, particularly in the N170 component of the left hemisphere. This study suggests that holistic processing is a fundamental aspect of face perception that applies to both static and moving faces, not just static ones. Furthermore, rigid facial motion improves holistic processing of own-race faces during the structural encoding stage. These findings provide evidence of distinct neural mechanisms underlying the holistic processing of static and moving faces.

摘要

整体加工是面孔识别研究的一个基本要素。一些行为研究已经调查了刚性面部运动对面孔整体加工的影响,但对于不同种族的面孔,刚性运动如何影响整体面孔加工的时程仍不清楚。本研究通过复合面孔效应(CFE)作为整体加工的直接测量来调查这个问题。在测试阶段,参与者被要求将静态复合面孔的上半部分与研究面孔的身份进行匹配,其中研究面孔是静态的或刚性运动的。ERP 结果表明,在识别本族面孔时,相对于静态研究面孔,刚性运动的研究面孔在 N170 成分中诱发更大的 CFE。P1、N170 和 P2 成分的振幅表明刚性运动促进了整体面孔加工,并且随着时间的推移,半球之间存在差异。具体来说,仅在右半球的 P1 和 P2 成分中观察到刚性运动面孔暴露后才会出现 CFE。此外,与静态面孔相比,刚性运动面孔的 CFE 更大,尤其是在左半球的 N170 成分中。这项研究表明,整体加工是面孔感知的一个基本方面,适用于静态和运动面孔,而不仅仅是静态面孔。此外,刚性面部运动在结构编码阶段改善了本族面孔的整体加工。这些发现为静态和运动面孔整体加工的不同神经机制提供了证据。

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