Publication | Open Access
Wearable Organic Electrochemical Transistor Array for Skin‐Surface Electrocardiogram Mapping Above a Human Heart
59
Citations
42
References
2023
Year
Medical ElectronicsMedical MonitoringEngineeringSkin‐surface Electrocardiogram MappingWearable TechnologyBiochemical SensorsHuman HeartWearable SensorsBiomedical EngineeringHealth Monitoring (Biomedical Engineering)Biosensing SystemsBiomedical DevicesBio-electronic InterfacesElectrical EngineeringWearable Ecg MappingWearable ElectronicsBiomedical SensorsAbstract ElectrocardiogramFlexible ElectronicsBioelectronicsElectrophysiologyWearable BiosensorsSports TrainingWearable Sensor
Abstract Electrocardiogram (ECG) mapping can provide vital information in sports training and cardiac disease diagnosis. However, most electronic devices for monitoring ECG signals need to use multiple long wires, which limit their wearability and conformability in practical applications, while wearable ECG mapping based on integrated sensor arrays has been rarely reported. Herein, ultra‐flexible organic electrochemical transistor (OECT) arrays used for wearable ECG mapping on the skin surface above a human heart are presented. QRS complexes of ECG signals at different recording distances and directions relative to the heart are obtained. Furthermore, the ECG signals are successfully analyzed by the devices before and after exercise, indicating potential applications in some sports training and fitness scenarios. The OECT arrays that can conveniently monitor spacial ECG signals in the heart region may find niche applications in wearable electronics and healthcare products in the future.
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