Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration

Bioresorbable electronic stimulators can deliver electrical stimulation in rodents to enhance functional muscle recovery after nerve injury. Here, the authors present a bioresorbable dynamic covalent polymer that enables reliable, long-lived operation of soft, stretchable devices of this type.

Guardado en:
Detalles Bibliográficos
Autores principales: Yeon Sik Choi, Yuan-Yu Hsueh, Jahyun Koo, Quansan Yang, Raudel Avila, Buwei Hu, Zhaoqian Xie, Geumbee Lee, Zheng Ning, Claire Liu, Yameng Xu, Young Joong Lee, Weikang Zhao, Jun Fang, Yujun Deng, Seung Min Lee, Abraham Vázquez-Guardado, Iwona Stepien, Ying Yan, Joseph W. Song, Chad Haney, Yong Suk Oh, Wentai Liu, Hong-Joon Yoon, Anthony Banks, Matthew R. MacEwan, Guillermo A. Ameer, Wilson Z. Ray, Yonggang Huang, Tao Xie, Colin K. Franz, Song Li, John A. Rogers
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
Materias:
Q
Acceso en línea:https://doaj.org/article/6bde3ba97d03446bb70cdf4014e89324
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:6bde3ba97d03446bb70cdf4014e89324
record_format dspace
spelling oai:doaj.org-article:6bde3ba97d03446bb70cdf4014e893242021-12-02T13:57:33ZStretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration10.1038/s41467-020-19660-62041-1723https://doaj.org/article/6bde3ba97d03446bb70cdf4014e893242020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19660-6https://doaj.org/toc/2041-1723Bioresorbable electronic stimulators can deliver electrical stimulation in rodents to enhance functional muscle recovery after nerve injury. Here, the authors present a bioresorbable dynamic covalent polymer that enables reliable, long-lived operation of soft, stretchable devices of this type.Yeon Sik ChoiYuan-Yu HsuehJahyun KooQuansan YangRaudel AvilaBuwei HuZhaoqian XieGeumbee LeeZheng NingClaire LiuYameng XuYoung Joong LeeWeikang ZhaoJun FangYujun DengSeung Min LeeAbraham Vázquez-GuardadoIwona StepienYing YanJoseph W. SongChad HaneyYong Suk OhWentai LiuHong-Joon YoonAnthony BanksMatthew R. MacEwanGuillermo A. AmeerWilson Z. RayYonggang HuangTao XieColin K. FranzSong LiJohn A. RogersNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yeon Sik Choi
Yuan-Yu Hsueh
Jahyun Koo
Quansan Yang
Raudel Avila
Buwei Hu
Zhaoqian Xie
Geumbee Lee
Zheng Ning
Claire Liu
Yameng Xu
Young Joong Lee
Weikang Zhao
Jun Fang
Yujun Deng
Seung Min Lee
Abraham Vázquez-Guardado
Iwona Stepien
Ying Yan
Joseph W. Song
Chad Haney
Yong Suk Oh
Wentai Liu
Hong-Joon Yoon
Anthony Banks
Matthew R. MacEwan
Guillermo A. Ameer
Wilson Z. Ray
Yonggang Huang
Tao Xie
Colin K. Franz
Song Li
John A. Rogers
Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
description Bioresorbable electronic stimulators can deliver electrical stimulation in rodents to enhance functional muscle recovery after nerve injury. Here, the authors present a bioresorbable dynamic covalent polymer that enables reliable, long-lived operation of soft, stretchable devices of this type.
format article
author Yeon Sik Choi
Yuan-Yu Hsueh
Jahyun Koo
Quansan Yang
Raudel Avila
Buwei Hu
Zhaoqian Xie
Geumbee Lee
Zheng Ning
Claire Liu
Yameng Xu
Young Joong Lee
Weikang Zhao
Jun Fang
Yujun Deng
Seung Min Lee
Abraham Vázquez-Guardado
Iwona Stepien
Ying Yan
Joseph W. Song
Chad Haney
Yong Suk Oh
Wentai Liu
Hong-Joon Yoon
Anthony Banks
Matthew R. MacEwan
Guillermo A. Ameer
Wilson Z. Ray
Yonggang Huang
Tao Xie
Colin K. Franz
Song Li
John A. Rogers
author_facet Yeon Sik Choi
Yuan-Yu Hsueh
Jahyun Koo
Quansan Yang
Raudel Avila
Buwei Hu
Zhaoqian Xie
Geumbee Lee
Zheng Ning
Claire Liu
Yameng Xu
Young Joong Lee
Weikang Zhao
Jun Fang
Yujun Deng
Seung Min Lee
Abraham Vázquez-Guardado
Iwona Stepien
Ying Yan
Joseph W. Song
Chad Haney
Yong Suk Oh
Wentai Liu
Hong-Joon Yoon
Anthony Banks
Matthew R. MacEwan
Guillermo A. Ameer
Wilson Z. Ray
Yonggang Huang
Tao Xie
Colin K. Franz
Song Li
John A. Rogers
author_sort Yeon Sik Choi
title Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
title_short Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
title_full Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
title_fullStr Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
title_full_unstemmed Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
title_sort stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/6bde3ba97d03446bb70cdf4014e89324
work_keys_str_mv AT yeonsikchoi stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT yuanyuhsueh stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT jahyunkoo stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT quansanyang stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT raudelavila stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT buweihu stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT zhaoqianxie stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT geumbeelee stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT zhengning stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT claireliu stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT yamengxu stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT youngjoonglee stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT weikangzhao stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT junfang stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT yujundeng stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT seungminlee stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT abrahamvazquezguardado stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT iwonastepien stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT yingyan stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT josephwsong stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT chadhaney stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT yongsukoh stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT wentailiu stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT hongjoonyoon stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT anthonybanks stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT matthewrmacewan stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT guillermoaameer stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT wilsonzray stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT yongganghuang stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT taoxie stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT colinkfranz stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT songli stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
AT johnarogers stretchabledynamiccovalentpolymersforsoftlonglivedbioresorbableelectronicstimulatorsdesignedtofacilitateneuromuscularregeneration
_version_ 1718392327056130048