
pmid: 30349495
pmc: PMC6186988
When individuals interact with others, perceived information is transmitted among their brains. The EEG-based hyperscanning technique, which provides an approach to explore dynamic brain activities between two or more interactive individuals and their underlying neural mechanisms, has been applied to study different aspects of social interactions since 2010. Recently there has been an increase in research on EEG-based hyperscanning of social interactions. This paper summarizes the application of EEG-based hyperscanning on the dynamic brain activities during social interactions according to the experimental designs and contents, discusses the possibility of applying inter-brain synchrony to social communication systems and analyzes the contributions and the limitations of these investigations. Furthermore, this paper sheds light on some new challenges to future EEG-based hyperscanning studies and the emerging field of EEG-based hyperscanning for pursuing the broader research field of social interactions.
Social Cognition, Cognitive science, EEG-based hyperscanning, Social Psychology, Cognitive Neuroscience, Brain activity and meditation, Social Sciences, Interpersonal Synchrony, Embodied Cognition and Social Interaction, EEG Analysis, inter-brain activities, Cognition, Field (mathematics), Cognitive psychology, FOS: Mathematics, Psychology, inter-brain synchrony, Deep Learning for EEG, Neuronal Oscillations in Cortical Networks, Communication, Pure mathematics, Life Sciences, social interaction, Electroencephalography, Social communication, Brain-Computer Interfaces in Neuroscience and Medicine, Social cognition, BF1-990, FOS: Psychology, phase coherence, Brain-Computer Interfaces, Social neuroscience, Mathematics, Neuroscience
Social Cognition, Cognitive science, EEG-based hyperscanning, Social Psychology, Cognitive Neuroscience, Brain activity and meditation, Social Sciences, Interpersonal Synchrony, Embodied Cognition and Social Interaction, EEG Analysis, inter-brain activities, Cognition, Field (mathematics), Cognitive psychology, FOS: Mathematics, Psychology, inter-brain synchrony, Deep Learning for EEG, Neuronal Oscillations in Cortical Networks, Communication, Pure mathematics, Life Sciences, social interaction, Electroencephalography, Social communication, Brain-Computer Interfaces in Neuroscience and Medicine, Social cognition, BF1-990, FOS: Psychology, phase coherence, Brain-Computer Interfaces, Social neuroscience, Mathematics, Neuroscience
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