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A transient, closed-loop network of wireless, body-integrated devices for autonomous electrotherapy

Authors :
Yeon Sik Choi
Hyoyoung Jeong
Rose T. Yin
Raudel Avila
Anna Pfenniger
Jaeyoung Yoo
Jong Yoon Lee
Andreas Tzavelis
Young Joong Lee
Sheena W. Chen
Helen S. Knight
Seungyeob Kim
Hak-Young Ahn
Grace Wickerson
Abraham Vázquez-Guardado
Elizabeth Higbee-Dempsey
Bender A. Russo
Michael A. Napolitano
Timothy J. Holleran
Leen Abdul Razzak
Alana N. Miniovich
Geumbee Lee
Beth Geist
Brandon Kim
Shuling Han
Jaclyn A. Brennan
Kedar Aras
Sung Soo Kwak
Joohee Kim
Emily Alexandria Waters
Xiangxing Yang
Amy Burrell
Keum San Chun
Claire Liu
Changsheng Wu
Alina Y. Rwei
Alisha N. Spann
Anthony Banks
David Johnson
Zheng Jenny Zhang
Chad R. Haney
Sung Hun Jin
Alan Varteres Sahakian
Yonggang Huang
Gregory D. Trachiotis
Bradley P. Knight
Rishi K. Arora
Igor R. Efimov
John A. Rogers
Source :
Science, Science, 376(6596)
Publication Year :
2022

Abstract

Temporary postoperative cardiac pacing requires devices with percutaneous leads and external wired power and control systems. This hardware introduces risks for infection, limitations on patient mobility, and requirements for surgical extraction procedures. Bioresorbable pacemakers mitigate some of these disadvantages, but they demand pairing with external, wired systems and secondary mechanisms for control. We present a transient closed-loop system that combines a time-synchronized, wireless network of skin-integrated devices with an advanced bioresorbable pacemaker to control cardiac rhythms, track cardiopulmonary status, provide multihaptic feedback, and enable transient operation with minimal patient burden. The result provides a range of autonomous, rate-adaptive cardiac pacing capabilities, as demonstrated in rat, canine, and human heart studies. This work establishes an engineering framework for closed-loop temporary electrotherapy using wirelessly linked, body-integrated bioelectronic devices.

Details

ISSN :
10959203 and 00368075
Volume :
376
Issue :
6596
Database :
OpenAIRE
Journal :
Science (New York, N.Y.)
Accession number :
edsair.doi.dedup.....f44c9871dd076b44814f24e533e7b2b5