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改变感觉运动模拟会根据个体在述情障碍特征上的差异影响面部表情处理的早期阶段。

Altering sensorimotor simulation impacts early stages of facial expression processing depending on individual differences in alexithymic traits.

机构信息

Department of Developmental and Social Psychology, University of Padova, Padova, Italy; Section for Cognitive Systems, DTU Compute, Technical University of Denmark, Kgs. Lyngby, Denmark.

Padova Neuroscience Center (PNC), University of Padova, Padova, Italy.

出版信息

Brain Cogn. 2021 Mar;148:105678. doi: 10.1016/j.bandc.2020.105678. Epub 2021 Jan 14.

Abstract

Simulation models of facial expressions suggest that posterior visual areas and brain areas underpinning sensorimotor simulations might interact to improve facial expression processing. According to these models, facial mimicry, a manifestation of sensorimotor simulation, may contribute to the visual processing of facial expressions by influencing early stages. The aim of this study was to assess whether and how sensorimotor simulation influences early stages of face processing, also investigating its relationship with alexithymic traits given that previous studies have suggested that individuals with high levels of alexithymic traits (vs. individuals with low levels of alexithymic traits) tend to use sensorimotor simulation to a lesser extent. We monitored P1 and N170 ERP components of the event-related potentials (ERP) in participants performing a fine discrimination task of facial expressions and animals, as a control condition. In half of the experiment, participants could freely use their facial mimicry whereas in the other half they had their facial mimicry blocked by a gel. Our results revealed that only individuals with lower compared to high alexithymic traits showed a larger modulation of the P1 amplitude as a function of the mimicry manipulation selectively for facial expressions (but not for animals), while we did not observe any modulation of the N170. Given the null results at the behavioural level, we interpreted the P1 modulation as compensative visual processing in individuals with low levels of alexithymia under conditions of interference on the sensorimotor processing, providing a preliminary evidence in favor of sensorimotor simulation models.

摘要

面部表情的模拟模型表明,后部视觉区域和支持感觉运动模拟的大脑区域可能相互作用,以改善面部表情处理。根据这些模型,面部模仿,即感觉运动模拟的一种表现形式,可能通过影响早期阶段对面部表情的视觉处理做出贡献。本研究旨在评估感觉运动模拟是否以及如何影响面部处理的早期阶段,同时鉴于先前的研究表明,高特质性抑郁个体(与低特质性抑郁个体相比)往往较少使用感觉运动模拟,因此我们还研究了其与特质性抑郁的关系。我们监测了参与者执行面部表情和动物精细辨别任务时的事件相关电位(ERP)中的 P1 和 N170 ERP 成分,作为对照条件。在实验的一半中,参与者可以自由地进行面部模仿,而在另一半中,他们的面部模仿被凝胶阻断。我们的结果表明,只有特质性抑郁程度较低的个体表现出 P1 振幅的更大调制,作为模仿操作的函数,仅针对面部表情(而不是动物),而我们没有观察到 N170 的任何调制。鉴于行为水平上的零结果,我们将 P1 调制解释为在感觉运动处理受到干扰的情况下,低特质性抑郁个体的补偿性视觉处理,为感觉运动模拟模型提供了初步证据。

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