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A Movable Longterm Implantable Soft Microfibre For Dynamic Bioelectronics Ruijie Xie Fei Han Qianhengyuan Yu Dong Li Xu Han Xiaolong Xu Huan Yu Jianping Huang Xiaomeng Zhou Hang Zhao Xinping Deng Qiong Tian Qingsong Li Hanfei Li Yang Zhao Guoyao Ma Guanglin Li Hairong Zheng Meifang Zhu

  • SKU: BELL-239004894
A Movable Longterm Implantable Soft Microfibre For Dynamic Bioelectronics Ruijie Xie Fei Han Qianhengyuan Yu Dong Li Xu Han Xiaolong Xu Huan Yu Jianping Huang Xiaomeng Zhou Hang Zhao Xinping Deng Qiong Tian Qingsong Li Hanfei Li Yang Zhao Guoyao Ma Guanglin Li Hairong Zheng Meifang Zhu
$ 35.00 $ 45.00 (-22%)

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56 reviews

A Movable Longterm Implantable Soft Microfibre For Dynamic Bioelectronics Ruijie Xie Fei Han Qianhengyuan Yu Dong Li Xu Han Xiaolong Xu Huan Yu Jianping Huang Xiaomeng Zhou Hang Zhao Xinping Deng Qiong Tian Qingsong Li Hanfei Li Yang Zhao Guoyao Ma Guanglin Li Hairong Zheng Meifang Zhu instant download after payment.

Publisher: x
File Extension: PDF
File size: 12.99 MB
Pages: 26
Author: Ruijie Xie & Fei Han & Qianhengyuan Yu & Dong Li & Xu Han & Xiaolong Xu & Huan Yu & Jianping Huang & Xiaomeng Zhou & Hang Zhao & Xinping Deng & Qiong Tian & Qingsong Li & Hanfei Li & Yang Zhao & Guoyao Ma & Guanglin Li & Hairong Zheng & Meifang Zhu &…
Language: English
Year: 2025

Product desciption

A Movable Longterm Implantable Soft Microfibre For Dynamic Bioelectronics Ruijie Xie Fei Han Qianhengyuan Yu Dong Li Xu Han Xiaolong Xu Huan Yu Jianping Huang Xiaomeng Zhou Hang Zhao Xinping Deng Qiong Tian Qingsong Li Hanfei Li Yang Zhao Guoyao Ma Guanglin Li Hairong Zheng Meifang Zhu by Ruijie Xie & Fei Han & Qianhengyuan Yu & Dong Li & Xu Han & Xiaolong Xu & Huan Yu & Jianping Huang & Xiaomeng Zhou & Hang Zhao & Xinping Deng & Qiong Tian & Qingsong Li & Hanfei Li & Yang Zhao & Guoyao Ma & Guanglin Li & Hairong Zheng & Meifang Zhu &… instant download after payment.

Nature, doi:10.1038/s41586-025-09344-w

Long-term implantable bioelectronics ofer a powerful means to evaluate the function of the nervous system and serve as efective human–machine interfaces1–3. Here, inspired by earthworms, we introduce NeuroWorm—a soft, stretchable and movable fbre sensor designed for bioelectronic interface. Our approach involves rolling to transform 2D bioelectronic devices into 1D NeuroWorm, creating a multifunctional microfbre that houses longitudinally distributed electrode arrays for both bioelectrical and biomechanical monitoring. NeuroWorm efectively records high-quality spatiotemporal signals in situ while steerably advancing within the brain or on the muscle as needed. This allows for the dynamic targeting and shifting of desired monitoring sites. Implanted in muscle through a tiny incision, NeuroWorm provides stable bioelectrical monitoring in rats for more than 43 weeks. Even after 54 weeks of implantation in muscle, fbroblast encapsulation around the fbre remains negligible. Our NeuroWorm represents a platform that promotes a substantial advance in bioelectronics—from an immobile probe fxed in place to active, intelligent and living devices for long-term, minimally invasive and mobile evaluation of the nervous system.