Abstract
Wearable electronics is a rapidly growing field that recently started to introduce successful commercial products into the consumer electronics market. Employment of biopotential signals in wearable systems as either biofeedbacks or control commands are expected to revolutionize many technologies including point of care health monitoring systems, rehabilitation devices, human-computer/machine interfaces (HCI/HMIs), and brain-computer interfaces (BCIs). Since electrodes are regarded as a decisive part of such products, they have been studied for almost a decade now, resulting in the emergence of textile electrodes. This study presents a systematic review of wearable textile electrodes in physiological signal monitoring, with discussions on the manufacturing of conductive textiles, metrics to assess their performance as electrodes, and an investigation of their application in the acquisition of critical biopotential signals for routine monitoring, assessment, and exploitation of cardiac (electrocardiography, ECG), neural (electroencephalography, EEG), muscular (electromyography, EMG), and ocular (electrooculography, EOG) functions.
Author supplied keywords
- Ag/agcl electrode
- Assistive devices
- Biopotential monitoring
- Biosignal acquisition
- Cardiac monitoring
- Conductive textile
- Dry electrode
- E-textile
- Ecg
- Eeg
- Ehealth
- Electrocardiography
- Electroencephalography
- Electromyography
- Electrooculography
- Emg
- Eog
- Eye tracking
- Flexible electronics
- Gesture
- Health monitoring
- Human computer interaction
- Human machine interface
- Iot
- Long-term monitoring
- Mhealth
- Muscular monitoring
- Neural monitoring
- Personalized healthcare
- Prosthetics
- Rehabilitation
- Sleep monitoring
- Smart textile
- Textile electrodes
- Vital signs
- Wearable computing
- Wearable electronics
Cite
CITATION STYLE
Acar, G., Ozturk, O., Golparvar, A. J., Elboshra, T. A., Böhringer, K., & Kaya Yapici, M. (2019). Wearable and flexible textile electrodes for biopotential signal monitoring: A review. Electronics (Switzerland), 8(5). https://doi.org/10.3390/electronics8050479
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