Ferromagnetic soft catheter robots for minimally invasive bioprinting

Direct bioprinting in vivo has the potential to enable new clinical strategies but is currently limited by printing techniques. Here, the authors report on the development of a ferromagnetic soft catheter for magnetic computer controlled minimally invasive bioprinting and demonstrate the printing po...

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Autores principales: Cheng Zhou, Youzhou Yang, Jiaxin Wang, Qingyang Wu, Zhuozhi Gu, Yuting Zhou, Xurui Liu, Yueying Yang, Hanchuan Tang, Qing Ling, Liu Wang, Jianfeng Zang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/51a20644d8bb45c0bef1344086cad3d7
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spelling oai:doaj.org-article:51a20644d8bb45c0bef1344086cad3d72021-12-02T18:01:16ZFerromagnetic soft catheter robots for minimally invasive bioprinting10.1038/s41467-021-25386-w2041-1723https://doaj.org/article/51a20644d8bb45c0bef1344086cad3d72021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25386-whttps://doaj.org/toc/2041-1723Direct bioprinting in vivo has the potential to enable new clinical strategies but is currently limited by printing techniques. Here, the authors report on the development of a ferromagnetic soft catheter for magnetic computer controlled minimally invasive bioprinting and demonstrate the printing potential in vivo.Cheng ZhouYouzhou YangJiaxin WangQingyang WuZhuozhi GuYuting ZhouXurui LiuYueying YangHanchuan TangQing LingLiu WangJianfeng ZangNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Cheng Zhou
Youzhou Yang
Jiaxin Wang
Qingyang Wu
Zhuozhi Gu
Yuting Zhou
Xurui Liu
Yueying Yang
Hanchuan Tang
Qing Ling
Liu Wang
Jianfeng Zang
Ferromagnetic soft catheter robots for minimally invasive bioprinting
description Direct bioprinting in vivo has the potential to enable new clinical strategies but is currently limited by printing techniques. Here, the authors report on the development of a ferromagnetic soft catheter for magnetic computer controlled minimally invasive bioprinting and demonstrate the printing potential in vivo.
format article
author Cheng Zhou
Youzhou Yang
Jiaxin Wang
Qingyang Wu
Zhuozhi Gu
Yuting Zhou
Xurui Liu
Yueying Yang
Hanchuan Tang
Qing Ling
Liu Wang
Jianfeng Zang
author_facet Cheng Zhou
Youzhou Yang
Jiaxin Wang
Qingyang Wu
Zhuozhi Gu
Yuting Zhou
Xurui Liu
Yueying Yang
Hanchuan Tang
Qing Ling
Liu Wang
Jianfeng Zang
author_sort Cheng Zhou
title Ferromagnetic soft catheter robots for minimally invasive bioprinting
title_short Ferromagnetic soft catheter robots for minimally invasive bioprinting
title_full Ferromagnetic soft catheter robots for minimally invasive bioprinting
title_fullStr Ferromagnetic soft catheter robots for minimally invasive bioprinting
title_full_unstemmed Ferromagnetic soft catheter robots for minimally invasive bioprinting
title_sort ferromagnetic soft catheter robots for minimally invasive bioprinting
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/51a20644d8bb45c0bef1344086cad3d7
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AT jiaxinwang ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT qingyangwu ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT zhuozhigu ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT yutingzhou ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT xuruiliu ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
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AT hanchuantang ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT qingling ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT liuwang ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
AT jianfengzang ferromagneticsoftcatheterrobotsforminimallyinvasivebioprinting
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