2021
DOI: 10.1038/s41587-021-00948-x
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Fully implantable and bioresorbable cardiac pacemakers without leads or batteries

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Cited by 212 publications
(195 citation statements)
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“…Compared with parallel processing speed of our neural system, there is still a huge gap within wearable electronic devices toward realizing the “Internet of Things.” In addition, flexible analog and digital circuits for wireless data transmission also need to be explored for efficient sending and receiving. 238…”
Section: Discussionmentioning
confidence: 99%
“…Compared with parallel processing speed of our neural system, there is still a huge gap within wearable electronic devices toward realizing the “Internet of Things.” In addition, flexible analog and digital circuits for wireless data transmission also need to be explored for efficient sending and receiving. 238…”
Section: Discussionmentioning
confidence: 99%
“…[378] Transient silicon nanomembrane devices have been used for highres olution spatial mapping of cortical activity, monitoring inter cranial pressure in rats, and wireless bioresorbable cardiac pacemakers. [379][380][381] Biodegradable elastomers have also garnered interest as substrate materials for bioresorbable electronics. Poly(1,8octanediolcocitrate) (POC) is one such biodegradable elastomer initially developed for tissue engineering applications that have been explored as a substrate for bioelectronics.…”
Section: Biodegradable Polymersmentioning
confidence: 99%
“…[192,249] An electrically controlled drug delivery system has successfully achieved and combined with real-time biometric analysis to provide precise diabetic prognosis and therapy (Figure 9b). [192] Therefore, the development of biodegradable and bioresorbable bioelectronics [311] for medical applications holds great promise to better human health.…”
Section: Thermo-responsive Gelling System For Localized Ocular Drug R...mentioning
confidence: 99%