电生理学
跨导
晶体管
晶体管阵列
放大器
传感器
纳米技术
灵活性(工程)
材料科学
计算机科学
神经科学
光电子学
电气工程
工程类
CMOS芯片
生物
电压
统计
数学
作者
Yizhou Zhong,Abdulelah Saleh,Sahika Inal
标识
DOI:10.1002/mabi.202100187
摘要
Abstract The organic electrochemical transistor (OECT) has unique characteristics that distinguish it from other transistors and make it a promising electronic transducer of biological events. High transconductance, flexibility, and biocompatibility render OECTs ideal for detecting electrophysiological signals. Device properties such as transconductance, response time, and noise level should, however, be optimized to adapt to the needs of various application environments including in vitro cell culture, human skin, and inside of a living system. This review includes an overview of the origin of electrophysiological signals, the working principles of OECTs, and methods for performance optimization. While covering recent research examples of the use of OECTs in electrophysiology, a perspective is provided for next‐generation bioelectric sensors and amplifiers for electrophysiology applications.
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