Design of CMOS Circuits for Electrophysiology

被引:0
|
作者
Van Helleputte, Nick [1 ]
Mora-Lopez, Carolina [2 ]
Van Hoof, Chris [3 ,4 ]
机构
[1] Imec, Circuits & Syst Hlth, Heverlee, Belgium
[2] Imec, Circuits Neural Interfaces Team, Heverlee, Belgium
[3] Imec, Heverlee, Belgium
[4] Katholieke Univ Leuven, Leuven, Belgium
关键词
biopotential amplifier; instrumentation amplifier; ECG; EEG; neural recording; BIDIRECTIONAL NEURAL INTERFACE; ANALOG FRONT-END; INSTRUMENTATION AMPLIFIER; STIMULATION; ACQUISITION; PROBE; DAC;
D O I
10.1587/transele.2022CTI0003
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Electrophysiology, which is the study of the electrical properties of biological tissues and cells, has become indispensable in mod-ern clinical research, diagnostics, disease monitoring and therapeutics. In this paper we present a brief history of this discipline and how integrated circuit design shaped electrophysiology in the last few decades. We will discuss how biopotential amplifier design has evolved from the classical three-opamp architecture to more advanced high-performance circuits enabling long-term wearable monitoring of the autonomous and central nervous system. We will also discuss how these integrated circuits evolved to measure in-vivo neural circuits. This paper targets readers who are new to the domain of biopotential recording and want to get a brief historical overview and get up to speed on the main circuit design concepts for both wearable and in-vivo biopotential recording.
引用
收藏
页码:506 / 515
页数:10
相关论文
共 50 条
  • [1] DESIGN OF CMOS CIRCUITS
    RADHAKRISHNAN, D
    IEE PROCEEDINGS-G CIRCUITS DEVICES AND SYSTEMS, 1991, 138 (01): : 83 - 90
  • [2] Design for diagnosability of CMOS circuits
    Wen, XQ
    Honzawa, T
    Tamamoto, H
    Saluja, KK
    Kinoshita, K
    SEVENTH ASIAN TEST SYMPOSIUM (ATS'98), PROCEEDINGS, 1998, : 144 - 149
  • [3] Constraints in the design of CMOS MVL circuits
    Gawande, Avinash D.
    Ladhake, S. A.
    WSEAS: INSTRUMENTATION, MEASUREMENT, CIRCUITS AND SYSTEMS, 2008, : 108 - +
  • [4] THERMAL DESIGN CONSIDERATIONS IN CMOS CIRCUITS
    CERGEL, L
    ELECTRONIC ENGINEERING, 1976, 48 (578): : 56 - 57
  • [5] Design Automation for Cryogenic CMOS Circuits
    van Santen, Victor M.
    Walter, Marcel
    Klemme, Florian
    Parihar, Shivendra Singh
    Pahwa, Girish
    Chauhan, Yogesh S.
    Wille, Robert
    Amrouch, Hussam
    2023 60TH ACM/IEEE DESIGN AUTOMATION CONFERENCE, DAC, 2023,
  • [6] Design of nanometer scale CMOS circuits
    Roy, K
    IEEE INTERNATIONAL SOC CONFERENCE, PROCEEDINGS, 2003, : 423 - 423
  • [7] A DESIGN OF CMOS POLYCELLS FOR LSI CIRCUITS
    KANG, SM
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS, 1981, 28 (08): : 838 - 843
  • [8] Design of Electrodes and Circuits for Cell Trapping on CMOS
    Park, Kyoungchul
    Kabiri, Shideh
    Sonkusale, Sameer
    2015 IEEE BIOMEDICAL CIRCUITS AND SYSTEMS CONFERENCE (BIOCAS), 2015, : 552 - 555
  • [9] Design and optimization of multithreshold CMOS (MTCMOS) circuits
    Anis, M
    Areibi, S
    Elmasry, M
    IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, 2003, 22 (10) : 1324 - 1342
  • [10] Improved structure for adiabatic CMOS circuits design
    Hang, G
    Wu, X
    MICROELECTRONICS JOURNAL, 2002, 33 (5-6): : 403 - 407