光遗传学
材料科学
柔性电子器件
光纤
生物电子学
数码产品
纳米技术
调制(音乐)
导电体
电子线路
光学计算
光电子学
电极
接口(物质)
电子工程
纤维
生物神经网络
人工神经网络
计算机科学
集成电路
光调制器
脑-机接口
神经工程
作者
Xingmei Chen,Lulu Wang,Qingfang Duan,Ziman Zheng,Yuhua Xue,Yinghui Feng,Yi Lu,Ji Liu
标识
DOI:10.1002/adma.202517771
摘要
Hydrogel-based electrodes and optical guides are promising tools for neural bioelectronics, offering tissue-like compliance, hydration capacity, and customizable functionalities. However, integrating multiple hydrogel modalities into a single device remains challenging due to material compatibility, cross-modal interference, and interfacial integration issues. In this work, an integrated hydrogel optical fiber electronics (iHOFE) platform is reported, including a step-index optical core, a conductive hydrogel layer, and a tissue-matched insulating sheath. By engineering the robust interface between each layer through chemical bonding and topological entanglement, a multilayer architecture capable of concurrent electrical and optical operation under dynamic mechanical deformation is created, thus high-fidelity electrophysiological recording and optogenetic modulation within the same region. The efficacy of the iHOFE is validated via two-month hippocampal implantation, demonstrating recording and manipulation of neural activity. This platform marks a significant advancement in developing multifunctional neural bioelectronics for interrogating and manipulating deep neural circuits compared to existing technologies.
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