High-Adhesive Flexible Electrodes and Their Manufacture: A Review
Гибкие электроды с высокой адгезией и их изготовление: обзор
2021-11-30
SCID: 54.1/5x54gkux
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electrophysiological signalsflexible electrodeshigh-adhesive electrodesmanufacturing techniqueswearable electronics
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Abstract (AI)
All human activity is associated with the generation of electrical signals. These signals are collectively referred to as electrical physiology (EP) signals (e.g., electrocardiogram, electroencephalogram, electromyography, electrooculography, etc.), which can be recorded by electrodes. EP electrodes are not only widely used in the study of primary diseases and clinical practice, but also have potential applications in wearable electronics, human-computer interface, and intelligent robots. Various technologies are required to achieve such goals. Among these technologies, adhesion and stretchable electrode technology is a key component for rapid development of high-performance sensors. In last decade, remarkable efforts have been made in the development of flexible and high-adhesive EP recording systems and preparation technologies. Regarding these advancements, this review outlines the design strategies and related materials for flexible and adhesive EP electrodes, and briefly summarizes their related manufacturing techniques.
Key Findings
1
Electrical physiology signals, including ECG, EEG, EMG, and EOG, can be recorded using electrodes for clinical, wearable, human–computer interface, and robotic applications.
2
Flexible and stretchable electrodes with strong adhesion are identified as key components for developing high-performance physiological sensors.
3
The review also surveys manufacturing techniques for flexible and adhesive electrophysiological recording systems developed over the past decade.
4
The review summarizes design strategies and materials used to create flexible, high-adhesion electrophysiological electrodes.
Research Object
flexible, high-adhesive electrodes for electrical physiology (EP) signal recording
Research Subject
design strategies, materials, and manufacturing techniques for flexible and adhesive EP electrodes
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2021-11-30
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