Fully Screen-Printed and Gentle-to-Skin Wet ECG Electrodes with Compact Wireless Readout for Cardiac Diagnosis and Remote Monitoring
Recent advances in electrocardiogram (ECG) diagnosis and monitoring have triggered a demand for smart and wearable ECG electrodes and readout systems. Here, we report the development of a fully screen-printed gentle-to-skin wet ECG electrode integrated with a scaled-down printed circuit board (PCB)...
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Published in | ACS nano Vol. 18; no. 14; pp. 10074 - 10087 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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American Chemical Society
09.04.2024
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Abstract | Recent advances in electrocardiogram (ECG) diagnosis and monitoring have triggered a demand for smart and wearable ECG electrodes and readout systems. Here, we report the development of a fully screen-printed gentle-to-skin wet ECG electrode integrated with a scaled-down printed circuit board (PCB) packaged inside a 3D-printed antenna-on-package (AoP). All three components of the wet ECG electrode (i.e., silver nanowire-based conductive part, electrode gel, and adhesive gel) are screen-printed on a flexible plastic substrate and only require 265 times less metal for the conductive part and 176 times less ECG electrode gel than the standard commercial wet ECG electrodes. In addition, our electrically small AoP achieved a maximum read range of 142 m and offers a 4 times larger wireless communication range than the typical commercial chip antenna. The adult volunteers’ study results indicated that our system recorded ECG data that correlated well with data from a commercial ECG system and electrodes. Furthermore, in the context of a 12-lead ECG diagnostic system, the fully printed wet ECG electrodes demonstrated a performance similar to that of commercially available wet ECG electrodes while being gentle on the skin. This was confirmed through a blind review method by two cardiology consultants and one family medicine consultant, validating the consistency of the diagnostic information obtained from both electrodes. In conclusion, these findings highlight the potential of fully screen-printed wet ECG electrodes for both monitoring and diagnostic purposes. These electrodes could serve as potential candidates for clinical practice, and the screen-printing method has the capability to facilitate industrial mass production. |
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AbstractList | Recent advances in electrocardiogram (ECG) diagnosis
and monitoring
have triggered a demand for smart and wearable ECG electrodes and
readout systems. Here, we report the development of a fully screen-printed
gentle-to-skin wet ECG electrode integrated with a scaled-down printed
circuit board (PCB) packaged inside a 3D-printed antenna-on-package
(AoP). All three components of the wet ECG electrode (i.e., silver
nanowire-based conductive part, electrode gel, and adhesive gel) are
screen-printed on a flexible plastic substrate and only require 265
times less metal for the conductive part and 176 times less ECG electrode
gel than the standard commercial wet ECG electrodes. In addition,
our electrically small AoP achieved a maximum read range of 142 m
and offers a 4 times larger wireless communication range than the
typical commercial chip antenna. The adult volunteers’ study
results indicated that our system recorded ECG data that correlated
well with data from a commercial ECG system and electrodes. Furthermore,
in the context of a 12-lead ECG diagnostic system, the fully printed
wet ECG electrodes demonstrated a performance similar to that of commercially
available wet ECG electrodes while being gentle on the skin. This
was confirmed through a blind review method by two cardiology consultants
and one family medicine consultant, validating the consistency of
the diagnostic information obtained from both electrodes. In conclusion,
these findings highlight the potential of fully screen-printed wet
ECG electrodes for both monitoring and diagnostic purposes. These
electrodes could serve as potential candidates for clinical practice,
and the screen-printing method has the capability to facilitate industrial
mass production. Recent advances in electrocardiogram (ECG) diagnosis and monitoring have triggered a demand for smart and wearable ECG electrodes and readout systems. Here, we report the development of a fully screen-printed gentle-to-skin wet ECG electrode integrated with a scaled-down printed circuit board (PCB) packaged inside a 3D-printed antenna-on-package (AoP). All three components of the wet ECG electrode (i.e., silver nanowire-based conductive part, electrode gel, and adhesive gel) are screen-printed on a flexible plastic substrate and only require 265 times less metal for the conductive part and 176 times less ECG electrode gel than the standard commercial wet ECG electrodes. In addition, our electrically small AoP achieved a maximum read range of 142 m and offers a 4 times larger wireless communication range than the typical commercial chip antenna. The adult volunteers' study results indicated that our system recorded ECG data that correlated well with data from a commercial ECG system and electrodes. Furthermore, in the context of a 12-lead ECG diagnostic system, the fully printed wet ECG electrodes demonstrated a performance similar to that of commercially available wet ECG electrodes while being gentle on the skin. This was confirmed through a blind review method by two cardiology consultants and one family medicine consultant, validating the consistency of the diagnostic information obtained from both electrodes. In conclusion, these findings highlight the potential of fully screen-printed wet ECG electrodes for both monitoring and diagnostic purposes. These electrodes could serve as potential candidates for clinical practice, and the screen-printing method has the capability to facilitate industrial mass production. |
Author | Bilal, Rana M. Rauf, Sakandar Shamim, Atif Li, Jiajun Vaseem, Mohammad Ahmad, Adeel N. |
AuthorAffiliation | School of Medicine Electrical and Computer Engineering, CEMSE |
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Snippet | Recent advances in electrocardiogram (ECG) diagnosis and monitoring have triggered a demand for smart and wearable ECG electrodes and readout systems. Here, we... Recent advances in electrocardiogram (ECG) diagnosis and monitoring have triggered a demand for smart and wearable ECG electrodes and readout systems. Here, we... |
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SubjectTerms | Adult Electrocardiography Electrodes Heart Humans Nanowires Silver |
Title | Fully Screen-Printed and Gentle-to-Skin Wet ECG Electrodes with Compact Wireless Readout for Cardiac Diagnosis and Remote Monitoring |
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