超细纤维
期限(时间)
计算机科学
材料科学
物理
复合材料
量子力学
作者
Zhiyuan Liu,Ruijie Xie,Qianhengyuan Yu,Dong Li,Han Xu,Xiaolong Xu,Jianping Huang,Xiaomeng Zhou,Hang Zhao,Xinping Deng,Qiong Tian,Qingsong Li,Hanfei Li,Hairong Zheng,Guanglin Li,Meifang Zhu,Wei Yan,Fei Han,Tiantian Xu
标识
DOI:10.21203/rs.3.rs-3689335/v1
摘要
Abstract Long-term implantable bioelectronics can efficiently evaluate the function of the nervous system and serve as effective human-machine interfaces. Here, inspired by earthworms, we introduce NeuroWorm, a soft and stretchable fibre sensor for bio-signal monitoring. Our approach involves rolling to transform 2D bioelectronic devices into 1D NeuroWorm, resulting in a soft, multifunctional microfibre housing over 60 longitudinally-distributed electrodes for bio-electric and -mechanical monitoring. It can be implanted in muscle with tiny incision for 8-month bio-electrical monitoring in rats. Importantly, after 13-month implantation, the fibroblast encapsulation around the fibre is negligible. Moreover, it can wander inside a brain under magnetic field. This strategy not only facilitates the development of multi-channel and multi-functional soft and stretchable fibre-shaped NeuroWorm sensors but also offers a platform for unprecedently long-term minimally-invasive implantable bioelectronics.
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