聚萘二甲酸乙二醇酯
材料科学
复合数
生物相容性材料
电极
放大器
碳纳米管
制作
导电体
纳米技术
光电子学
生物医学工程
复合材料
聚合物
CMOS芯片
化学
医学
病理
物理化学
替代医学
作者
Tsuyoshi Sekitani,Tomoyuki Yokota,Kazunori Kuribara,Martin Kaltenbrunner,Takanori Fukushima,Yusuke Inoue,Masaki Sekino,Takashi Isoyama,Yusuke Abe,Hiroshi Onodera,Takao Someya
摘要
In vivo electronic monitoring systems are promising technology to obtain biosignals with high spatiotemporal resolution and sensitivity. Here we demonstrate the fabrication of a biocompatible highly conductive gel composite comprising multi-walled carbon nanotube-dispersed sheet with an aqueous hydrogel. This gel composite exhibits admittance of 100 mS cm(-2) and maintains high admittance even in a low-frequency range. On implantation into a living hypodermal tissue for 4 weeks, it showed a small foreign-body reaction compared with widely used metal electrodes. Capitalizing on the multi-functional gel composite, we fabricated an ultrathin and mechanically flexible organic active matrix amplifier on a 1.2-μm-thick polyethylene-naphthalate film to amplify (amplification factor: ∼200) weak biosignals. The composite was integrated to the amplifier to realize a direct lead epicardial electrocardiography that is easily spread over an uneven heart tissue.
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