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用于生物传感器微系统的CMOS电化学仪器:综述

CMOS Electrochemical Instrumentation for Biosensor Microsystems: A Review.

作者信息

Li Haitao, Liu Xiaowen, Li Lin, Mu Xiaoyi, Genov Roman, Mason Andrew J

机构信息

Maxim Integrated Products Inc., 160 Rio Robles, San Jose, CA 95134, USA.

Xcellcure LLC., 1 City Place Drive Suite 285, St. Louis, MO 63131, USA.

出版信息

Sensors (Basel). 2016 Dec 31;17(1):74. doi: 10.3390/s17010074.

Abstract

Modern biosensors play a critical role in healthcare and have a quickly growing commercial market. Compared to traditional optical-based sensing, electrochemical biosensors are attractive due to superior performance in response time, cost, complexity and potential for miniaturization. To address the shortcomings of traditional benchtop electrochemical instruments, in recent years, many complementary metal oxide semiconductor (CMOS) instrumentation circuits have been reported for electrochemical biosensors. This paper provides a review and analysis of CMOS electrochemical instrumentation circuits. First, important concepts in electrochemical sensing are presented from an instrumentation point of view. Then, electrochemical instrumentation circuits are organized into functional classes, and reported CMOS circuits are reviewed and analyzed to illuminate design options and performance tradeoffs. Finally, recent trends and challenges toward on-CMOS sensor integration that could enable highly miniaturized electrochemical biosensor microsystems are discussed. The information in the paper can guide next generation electrochemical sensor design.

摘要

现代生物传感器在医疗保健领域发挥着关键作用,并且拥有快速增长的商业市场。与传统的基于光学的传感技术相比,电化学生物传感器因其在响应时间、成本、复杂性和小型化潜力方面的卓越性能而颇具吸引力。为了解决传统台式电化学仪器的缺点,近年来,已报道了许多用于电化学生物传感器的互补金属氧化物半导体(CMOS)仪器电路。本文对CMOS电化学仪器电路进行了综述和分析。首先,从仪器的角度介绍了电化学传感中的重要概念。然后,将电化学仪器电路按功能类别进行组织,并对已报道的CMOS电路进行综述和分析,以阐明设计选项和性能权衡。最后,讨论了实现高度小型化电化学生物传感器微系统的片上CMOS传感器集成的最新趋势和挑战。本文中的信息可以指导下一代电化学传感器的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf3e/5298647/bed17419c0d6/sensors-17-00074-g001.jpg

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