Litcius/Paper detail

Exploring textile-based electrode materials for electromyography smart garments

Emily Lam, Milad Alizadeh-Meghrazi, Alessandra Schlums, Ladan Eskandarian, Amin Mahnam, Bastien Moineau, Miloš R. Popović

2022Journal of Rehabilitation and Assistive Technologies Engineering33 citationsDOIOpen Access PDF

Abstract

INTRODUCTION: In recent years, electromyography (EMG) has been increasingly studied for wearable applications. Conventional gel electrodes for electrophysiological recordings have limited use in everyday applications such as prosthetic control or muscular therapy at home. This study investigates the efficacy and feasibility of dry-contact electrode materials employed in smart textiles for EMG recordings. METHODS: Dry-contact electrode materials were selected and implemented on textile substrates. Using these electrodes, EMG was recorded from the forearm of able-bodied subjects. 25% and 50% isometric maximum voluntary contractions were captured. A comparative investigation was performed against gel electrodes, assessing the effect of material properties on signal fidelity and strength compared. RESULTS: < 0.001). The inclusion of ionic liquids in the material composition, and using raised or flat electrodes, did not demonstrate a significant effect in signal quality. CONCLUSIONS: For EMG dry-contact electrodes, comparing the performance against gel electrodes for the application with the selected material is important. Other factors recommended to be studied are electrodes' durability and long-term stability.

Topics & Concepts

ElectrodeMaterials scienceElectromyographyBiomedical engineeringWearable computerIsometric exerciseComposite materialDurabilityComputer sciencePhysical medicine and rehabilitationMedicinePhysical therapyChemistryEmbedded systemPhysical chemistryAdvanced Sensor and Energy Harvesting MaterialsMuscle activation and electromyography studiesDielectric materials and actuators