Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces

The development of high-performance implantable soft electronics as diagnostic platforms is key to realizing improved health monitoring. Here, the authors design wireless, battery-free, implantable bioelectronics that interface with the osseosurface for chronic musculoskeletal system monitoring.

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Autores principales: Le Cai, Alex Burton, David A. Gonzales, Kevin Albert Kasper, Amirhossein Azami, Roberto Peralta, Megan Johnson, Jakob A. Bakall, Efren Barron Villalobos, Ethan C. Ross, John A. Szivek, David S. Margolis, Philipp Gutruf
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/fa17d67fc77349df8d6a3d4208245ded
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spelling oai:doaj.org-article:fa17d67fc77349df8d6a3d4208245ded2021-11-21T12:34:10ZOsseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces10.1038/s41467-021-27003-22041-1723https://doaj.org/article/fa17d67fc77349df8d6a3d4208245ded2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-27003-2https://doaj.org/toc/2041-1723The development of high-performance implantable soft electronics as diagnostic platforms is key to realizing improved health monitoring. Here, the authors design wireless, battery-free, implantable bioelectronics that interface with the osseosurface for chronic musculoskeletal system monitoring.Le CaiAlex BurtonDavid A. GonzalesKevin Albert KasperAmirhossein AzamiRoberto PeraltaMegan JohnsonJakob A. BakallEfren Barron VillalobosEthan C. RossJohn A. SzivekDavid S. MargolisPhilipp GutrufNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Le Cai
Alex Burton
David A. Gonzales
Kevin Albert Kasper
Amirhossein Azami
Roberto Peralta
Megan Johnson
Jakob A. Bakall
Efren Barron Villalobos
Ethan C. Ross
John A. Szivek
David S. Margolis
Philipp Gutruf
Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
description The development of high-performance implantable soft electronics as diagnostic platforms is key to realizing improved health monitoring. Here, the authors design wireless, battery-free, implantable bioelectronics that interface with the osseosurface for chronic musculoskeletal system monitoring.
format article
author Le Cai
Alex Burton
David A. Gonzales
Kevin Albert Kasper
Amirhossein Azami
Roberto Peralta
Megan Johnson
Jakob A. Bakall
Efren Barron Villalobos
Ethan C. Ross
John A. Szivek
David S. Margolis
Philipp Gutruf
author_facet Le Cai
Alex Burton
David A. Gonzales
Kevin Albert Kasper
Amirhossein Azami
Roberto Peralta
Megan Johnson
Jakob A. Bakall
Efren Barron Villalobos
Ethan C. Ross
John A. Szivek
David S. Margolis
Philipp Gutruf
author_sort Le Cai
title Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
title_short Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
title_full Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
title_fullStr Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
title_full_unstemmed Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
title_sort osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/fa17d67fc77349df8d6a3d4208245ded
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