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Amperometric and impedance monitorin...
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Punter-Villagrasa, Jaime.
Amperometric and impedance monitoring systems for biomedical applications
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Amperometric and impedance monitoring systems for biomedical applications/ by Jaime Punter-Villagrasa ... [et al.].
other author:
Punter-Villagrasa, Jaime.
Published:
Cham :Springer International Publishing : : 2017.,
Description:
viii, 241 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Biomedical engineering. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-64801-9
ISBN:
9783319648019
Amperometric and impedance monitoring systems for biomedical applications
Amperometric and impedance monitoring systems for biomedical applications
[electronic resource] /by Jaime Punter-Villagrasa ... [et al.]. - Cham :Springer International Publishing :2017. - viii, 241 p. :ill., digital ;24 cm. - Bioanalysis, advanced materials, methods, and devices,v.42364-1118 ;. - Bioanalysis, advanced materials, methods, and devices ;1..
Acknowledgements -- Abstract -- Abbreviations -- Contents -- List Of Figures -- 1 Introduction -- 2 Electronics architectures Box -- 3 Design, Test and Validation of the proposed Architecture -- 4 Validation of the Pervasive Architecture with different applications -- 5 New Generation of POC Device: AN Hematrocrit (HCT) Detection Case -- 6 Conclusions -- Appendix A: Schematics, Design and Validation of Different Potentiostat Topologies -- Appendix B: Schematics, Design and Validation of an Electronic Device for EIS Applications -- Appendix C: Schematics, Design and Validation of the HCT POC Device.
The book presents the conception and realization of a pervasive electronic architecture for electrochemical applications, focusing on electronic instrumentation design and device development, particularly in electrochemical Point-of-Care and Lab-on-a-Chip devices, covering examples based on amperometric (DC) and impedance detection (AC) techniques. The presented electronics combine tailored front-end instrumentation and back-end data post-processing, enabling applications in different areas, and across a variety of techniques, analytes, transducers and environments. It addresses how the electronics are designed and implemented with special interest in the flow process: starting from electronic circuits and electrochemical biosensor design to a final validation and implementation for specific applications. Similarly, other important aspects are discussed throughout the book, such as electrochemical techniques, different analytes, targets, electronics reliability and robustness. The book also describes the use of the presented electronics in different electrochemical applications through some examples: instantaneous and non-destructive cellular monitoring and portable glucose monitoring device. Moreover, the book aims to introduce a comprehensive approach to electronic circuits, techniques and electrochemical sensors in POC devices to a general audience of students in biomedical and electronics engineering, scientists, and engineers.
ISBN: 9783319648019
Standard No.: 10.1007/978-3-319-64801-9doiSubjects--Topical Terms:
588770
Biomedical engineering.
LC Class. No.: R856 / .A474 2017
Dewey Class. No.: 610.28
Amperometric and impedance monitoring systems for biomedical applications
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Acknowledgements -- Abstract -- Abbreviations -- Contents -- List Of Figures -- 1 Introduction -- 2 Electronics architectures Box -- 3 Design, Test and Validation of the proposed Architecture -- 4 Validation of the Pervasive Architecture with different applications -- 5 New Generation of POC Device: AN Hematrocrit (HCT) Detection Case -- 6 Conclusions -- Appendix A: Schematics, Design and Validation of Different Potentiostat Topologies -- Appendix B: Schematics, Design and Validation of an Electronic Device for EIS Applications -- Appendix C: Schematics, Design and Validation of the HCT POC Device.
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The book presents the conception and realization of a pervasive electronic architecture for electrochemical applications, focusing on electronic instrumentation design and device development, particularly in electrochemical Point-of-Care and Lab-on-a-Chip devices, covering examples based on amperometric (DC) and impedance detection (AC) techniques. The presented electronics combine tailored front-end instrumentation and back-end data post-processing, enabling applications in different areas, and across a variety of techniques, analytes, transducers and environments. It addresses how the electronics are designed and implemented with special interest in the flow process: starting from electronic circuits and electrochemical biosensor design to a final validation and implementation for specific applications. Similarly, other important aspects are discussed throughout the book, such as electrochemical techniques, different analytes, targets, electronics reliability and robustness. The book also describes the use of the presented electronics in different electrochemical applications through some examples: instantaneous and non-destructive cellular monitoring and portable glucose monitoring device. Moreover, the book aims to introduce a comprehensive approach to electronic circuits, techniques and electrochemical sensors in POC devices to a general audience of students in biomedical and electronics engineering, scientists, and engineers.
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