生物电子学
转印
纳米技术
材料科学
共形映射
墨水池
热传递
高分子科学
复合材料
生物传感器
几何学
数学
作者
Zhuocheng Yan,Taisong Pan,Miaomiao Xue,Changyong Chen,Yan Cui,Guang Yao,Long Huang,Feiyi Liao,Jing Wei,Hulin Zhang,Min Gao,Daqing Guo,Xia Yang,Yuan Lin
出处
期刊:Advanced Science
[Wiley]
日期:2017-07-31
卷期号:4 (11): 1700251-1700251
被引量:141
标识
DOI:10.1002/advs.201700251
摘要
Abstract Soft neural electrode arrays that are mechanically matched between neural tissues and electrodes offer valuable opportunities for the development of disease diagnose and brain computer interface systems. Here, a thermal release transfer printing method for fabrication of stretchable bioelectronics, such as soft neural electrode arrays, is presented. Due to the large, switchable and irreversible change in adhesion strength of thermal release tape, a low‐cost, easy‐to‐operate, and temperature‐controlled transfer printing process can be achieved. The mechanism of this method is analyzed by experiments and fracture‐mechanics models. Using the thermal release transfer printing method, a stretchable neural electrode array is fabricated by a sacrificial‐layer‐free process. The ability of the as‐fabricated electrode array to conform different curvilinear surfaces is confirmed by experimental and theoretical studies. High‐quality electrocorticography signals of anesthetized rat are collected with the as‐fabricated electrode array, which proves good conformal interface between the electrodes and dura mater. The application of the as‐fabricated electrode array on detecting the steady‐state visual evoked potentials research is also demonstrated by in vivo experiments and the results are compared with those detected by stainless‐steel screw electrodes.
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