Asynchronous neural oscillations associated with subliminal affective face priming in autism spectrum disorder

Author:

Tanaka Mutsuhide12,Yamada Emi1,Yamasaki Takao1,Fujita Takako3,Nakaniwa Yoichi4,Ogata Katsuya1,Nakazono Hisato1,Maekawa Toshihiko1,Tobimatsu Shozo1

Affiliation:

1. Department of Clinical Neurophysiology, Neurological Institute, Graduate School of Medical Science, Kyushu University, Fukuoka

2. Department of Health and Welfare Occupational Therapy Course, Faculty of Health and Welfare, Prefectural University of Hiroshima, Hiroshima

3. Department of Pediatrics, Faculty of Medicine, Fukuoka University

4. Nakaniwa Mental Clinic, Fukuoka, Japan

Abstract

Autism spectrum disorder (ASD) is characterized by social communicative disturbance. Social communication requires rapid processing and accurate cognition regarding others’ emotional expressions. Previous electrophysiological studies have attempted to elucidate the processes underlying atypical face-specific N170 responses to emotional faces in ASD. The present study explored subliminal affective priming effects (SAPEs) on the N170 response and time-frequency analysis of intertrial phase coherence (ITPC) for the N170 in ASD. Fifteen participants [seven participants with ASD and eight typically developing (TD) controls] were recruited for the experiment. Event-related potentials were recorded with a 128-channel electroencephalography device while participants performed an emotional face judgment task. The results revealed enhanced N170 amplitude for supraliminal target-face stimuli when they were preceded by subliminal fearful-face stimuli, in both the ASD and TD groups. Interestingly, TD participants exhibited higher alpha-ITPC in the subliminal fearful-face priming condition in the right face-specific area in the N170 time window. In contrast, there were no significant differences in ITPC in any frequency bands between the subliminal fearful and neutral priming conditions in the ASD group. Asynchronous phase-locking neural activities in the face-specific area may underlie impaired nonconscious face processing in ASD, despite the presence of common features of SAPEs for the N170 component in both the ASD and TD groups.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

General Neuroscience

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