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Related Experiment Video

Updated: Jan 27, 2026

Author Spotlight: Capturing Infant-Caregiver Interactions Through Synchronized Multimodal Data Collection
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Implementing EEG hyperscanning setups.

Paulo Barraza1, Guillaume Dumas2,3,4, Huanhuan Liu5,6

  • 1Centro de Investigación Avanzada en Educación (CIAE), Universidad de Chile, Santiago de Chile, Chile.

Methodsx
|March 26, 2019
PubMed
Summary
This summary is machine-generated.

This study details practical Electroencephalography (EEG) hyperscanning setups for simultaneous brain recordings. The described methods enable researchers to study brain-to-brain synchronization during interactions.

Keywords:
B2BBrain-to-brainEEGEEG hyperscanning setupHyperscanningInterbrain

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Area of Science:

  • Neuroscience
  • Cognitive Science
  • Biomedical Engineering

Background:

  • Hyperscanning involves simultaneous neural recordings from multiple individuals to study interactive situations.
  • Electroencephalography (EEG) hyperscanning offers high temporal resolution for exploring interactive brain dynamics.
  • A significant gap exists between the concept and practical implementation of EEG hyperscanning setups.

Purpose of the Study:

  • To provide detailed, reproducible solutions for common technological challenges in EEG hyperscanning.
  • To describe customized EEG hyperscanning setups using commercially available hardware and software.
  • To enable independent and synchronization measures between simultaneously recorded brains.

Main Methods:

  • Step-by-step description of EEG hyperscanning setup implementation.
  • Customized configurations using hardware/software from Brain Products, ANT, EGI, and BioSemi.
  • Ensuring individual electrical Ground and Reference for all participants.

Main Results:

  • Provided necessary details for establishing functional EEG hyperscanning protocols.
  • Developed setups capable of both independent signal acquisition and inter-brain synchronization analysis.
  • Successfully implemented systems ensuring proper electrical grounding and referencing.

Conclusions:

  • The described EEG hyperscanning setups address technological hurdles and facilitate reproducible research.
  • These setups allow for robust investigation of neural synchronization during social interactions.
  • The provided guidance supports the advancement of interactive brain research using EEG hyperscanning.