生物界面
材料科学
纳米技术
坐骨神经
信号(编程语言)
生物电子学
纤维
碳纳米管
电活性聚合物
聚合物
接口(物质)
调制(音乐)
神经组织工程
弯曲
数码产品
生物神经网络
生物医学工程
计算机科学
人工神经网络
神经假体
神经纤维
神经突
作者
Tao Zhou,Rouhui Yu,Xiaowen Bai,Yiqing Yang,Zhongyao Fan,Xiangheng Du,Yaqi Chen,Yong Wang,Zhen Yang,Xuemei Sun,Meifang Zhu,Shaowu Pan
标识
DOI:10.1038/s41467-026-71689-1
摘要
Neural interfaces are essential for brain-machine communication and closed-loop neuromodulation. However, achieving durable interfaces between neural tissue and bioelectronics remains a key challenge, as conventional electronics do not actively conform to the soft, tortuous 3D architecture of neural tissue. We report a tissue-adaptive bioelectronic fiber that actively contracts to wrap around neural tissues, forming ultrastable neural-electronic interfaces, and enabling highly reliable neural stimulation and recording. This fiber is fabricated via wet spinning from a precursor integrating a thermoresponsive polymer and electroactive materials, and exhibits an ultralow modulus of 0.16 MPa and a phase transition temperature of 26.7 °C. Upon contact with rat tissue, the polymer chains undergo a hydrophilic-to-hydrophobic transition, expelling water and contracting the fiber to conform tightly to the sciatic nerve. This ultrastable biointerface demonstrates reliable neural stimulation, producing stable hindlimb bending responses, while sciatic nerve action potential recordings show 99.5% signal retention under successive stimulations.
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