作者
Ramon Garcia-Cortadella, Gerrit Schwesig, Christoph Jeschke, Xavi Illa, Anna L Gray, Sinead Savage, E Stamatidou, I Schiessl, Eduard Masvidal-Codina, Kostas Kostarelos, Anton Guimerà-Brunet, Anton Sirota, Jose A Garrido
发表日期
2021/1/11
期刊
Nature communications
卷号
12
期号
1
页码范围
211
出版商
Nature Publishing Group UK
简介
Graphene active sensors have demonstrated promising capabilities for the detection of electrophysiological signals in the brain. Their functional properties, together with their flexibility as well as their expected stability and biocompatibility have raised them as a promising building block for large-scale sensing neural interfaces. However, in order to provide reliable tools for neuroscience and biomedical engineering applications, the maturity of this technology must be thoroughly studied. Here, we evaluate the performance of 64-channel graphene sensor arrays in terms of homogeneity, sensitivity and stability using a wireless, quasi-commercial headstage and demonstrate the biocompatibility of epicortical graphene chronic implants. Furthermore, to illustrate the potential of the technology to detect cortical signals from infra-slow to high-gamma frequency bands, we perform proof-of-concept long-term wireless …
学术搜索中的文章
R Garcia-Cortadella, G Schwesig, C Jeschke, X Illa… - Nature communications, 2021