材料科学
数码产品
可伸缩电子设备
神经调节
接口
生物医学工程
微流控
纳米技术
脑-机接口
电子皮肤
迷走神经
电极
软机器人
计算机科学
神经科学
电气工程
计算机硬件
工程类
机器人
人工智能
脑电图
化学
中枢神经系统
物理化学
生物
刺激
作者
Ruihua Dong,Lulu Wang,Zebin Li,Jincheng Jiao,Yan Wu,Zhuowei Feng,Xufang Wang,Minglong Chen,Chang Cui,Yi Lu,Xingyu Jiang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-01-02
卷期号:18 (2): 1702-1713
被引量:13
标识
DOI:10.1021/acsnano.3c10028
摘要
Implantable neuroelectronic interfaces have gained significant importance in long-term brain-computer interfacing and neuroscience therapy. However, due to the mechanical and geometrical mismatches between the electrode-nerve interfaces, personalized and compatible neural interfaces remain serious issues for peripheral neuromodulation. This study introduces the stretchable and flexible electronics class as a self-rolled neural interface for neurological diagnosis and modulation. These stretchable electronics are made from liquid metal-polymer conductors with a high resolution of 30 μm using microfluidic printing technology. They exhibit high conformability and stretchability (over 600% strain) during body movements and have good biocompatibility during long-term implantation (over 8 weeks). These stretchable electronics offer real-time monitoring of epileptiform activities with excellent conformability to soft brain tissue. The study also develops self-rolled microfluidic electrodes that tightly wind the deforming nerves with minimal constraint (160 μm in diameter). The
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