bioRxiv · 10.1101/2025.01.26.634908
A wireless, scalable and modular EEG sensor network platform for unobtrusive brain recordings
Abstract
This paper introduces a modular sensing platform for wearable electroencephalography (EEG) recordings. The platform is conceived as a wireless EEG sensor network (WESN), consisting of multiple miniaturized, wireless EEG sensor nodes that synchronously collect EEG data from different scalp locations. As there are no wires between the different sensors, the platform provides maximal flexibility and discreetness, combined with a reduced sensitivity to motion artefacts or electro-magnetic interference. By removing the driven right leg (DRL) electrode and reducing the within-node electrode spacing to 3cm, we obtain a compact design while maintaining a high signal integrity. The WESN system was validated through a series of experiments: achieving synchronization of EEG data transmission across multiple sensor nodes and the detection of actual neural responses in EEG experiments. These results demonstrate the effectiveness and robustness of the proposed WESN platform, establishing it as a promising research platform for scalable, flexible, and discreet multi-channel EEG monitoring in ambulatory settings.
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Ding, R., Hovine, C., Callemeyn, P., Kraft, M., Bertrand, A.. 2025-01-27. A wireless, scalable and modular EEG sensor network platform for unobtrusive brain recordings. https://doi.org/10.1101/2025.01.26.634908
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