International Research Center for Cognitive Applied Neuroscience (IrcCAN), Università Cattolica del Sacro Cuore, Milan, Italy.
Research Unit in Affective and Social Neuroscience, Department of Psychology, Università Cattolica del Sacro Cuore, Largo Gemelli, 1, 20123, Milan, Italy.
Sci Rep. 2023 Mar 16;13(1):4344. doi: 10.1038/s41598-023-31494-y.
Previous single-brain studies suggested interoception plays a role in interpersonal synchronization. The aim of the present study was to assess the electrophysiological intersubject coherence through electrophysiological (EEG) hyperscanning recording during simple dyadic synchronization tasks when the participants focused on their breath. To this aim, the neural activity of 15 dyads of participants was collected during the execution of a cognitive and motor synchronization task in two distinct IA conditions: focus and no focus on the breath condition. Individuals' EEG frequency bands were recorded through EEG hyperscanning and coherence analysis was performed. Results showed greater EEG coherence was observed for the alpha band in frontopolar brain regions (Fp1, Fp2) and also in central brain regions (C3, C4) within the dyads, during the focus on the breath condition for the motor compared to the cognitive synchronization task; during the same experimental condition, delta and theta band showed augmented inter-individual coherence in the frontal region (Fz) and central areas (C3, C4). To conclude, the current hyperscanning study highlights how the manipulation of the interoceptive focus (obtained through the focus on the breath) strengthens the manifestation of the EEG markers of interpersonal tuning during a motor synchronization task in specific brain areas.
先前的单脑研究表明,内感受在人际同步中起着作用。本研究的目的是评估通过在参与者专注于呼吸时进行简单的二元同步任务的电生理超扫描记录来评估电生理(EEG)主体间相干性。为此,在两个不同的 IA 条件下:专注于呼吸和不专注于呼吸条件下,对 15 对参与者的神经活动进行了 EEG 超扫描记录,并进行了相干性分析。结果表明,在专注于呼吸条件下,与认知同步任务相比,运动同步任务中额极脑区(Fp1、Fp2)和中央脑区(C3、C4)的 alpha 波段的脑间相干性更大;在相同的实验条件下,delta 和 theta 波段在额区(Fz)和中央区(C3、C4)的个体间相干性增强。总之,本超扫描研究强调了如何通过对内感受焦点的操纵(通过专注于呼吸来实现)来增强特定脑区运动同步任务中人际调谐的 EEG 标记的表现。