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Updated: Apr 26, 2026

Conformable Wearable Electrodes: From Fabrication to Electrophysiological Assessment
Published on: July 22, 2022
Skin-Conformal DES Hydrogel Electrode with Antibacterial Activity for High-Fidelity sEMG and Strain Sensing in
You Zhou1, Wenfeng Zhai2,3, Shiyu Song2,3
1Beijing Jishuitan Hospital, Beijing Research Institute of Traumatology and Orthopaedics, Capital Medical University, Beijing 100035, PR China.
Abstract:
The aging society has increased the need for precise, real-time monitoring of muscle rehabilitation. This study aimed to develop a multifunctional flexible sensor to overcome the rigidity, skin irritation, and single functionality of conventional electrodes. The ionically conductive hydrogel-based flexible sensor was fabricated via in situ polymerization using a deep eutectic solvent (DES, choline chloride/acrylic acid) as the conductive medium within a chitosan network. The electrode exhibited low interfacial impedance for high-sensitivity surface electromyography (sEMG) acquisition alongside excellent antibacterial properties, biocompatibility, and real-time strain-sensing capability. This work provided a low-cost, integrated wearable platform with significant potential for the personalized assessment and optimization of muscle rehabilitation training.

