生物电子学
材料科学
纳米技术
稳健性(进化)
无线
生物界面
压力传感器
生物医学工程
计算机科学
生物传感器
机械工程
工程类
电信
生物化学
化学
基因
作者
Jingsen Lin,Xingmei Chen,Shouxin Zhang,Yuhua Xue,Yinghui Feng,Zhipeng Ni,Tao Yue,Yafei Wang,Ji Liu
标识
DOI:10.1002/adma.202400181
摘要
Abstract Recent electronics‐tissues biointefacing technology has offered unprecedented opportunities for long‐term disease diagnosis and treatment. It remains a grand challenge to robustly anchor the pressure sensing bioelectronics onto specific organs, since the periodically‐varying stress generated by normal biological processes may pose high risk of interfacial failures. Here, a general yet reliable approach is reported to achieve the robust hydrogel interface between wireless pressure sensor and biological tissues/organs, featuring highly desirable mechanical compliance and swelling resistance, despite the direct contact with biofluids and dynamic conditions. The sensor is operated wirelessly through inductive coupling, characterizing minimal hysteresis, fast response times, excellent stability, and robustness, thus allowing for easy handling and eliminating the necessity for surgical extraction after a functional period. The operation of the wireless sensor has been demonstrated with a custom‐made pressure sensing model and in vivo intracranial pressure monitoring in rats. This technology may be advantageous in real‐time post‐operative monitoring of various biological inner pressures after the reconstructive surgery, thus guaranteeing the timely treatment of lethal diseases.
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