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CMOS Biotechnology

CMOS Biotechnology
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 26307241X Buchausg. u.d.T.: ‡CMOS biotechnology
ISBN 978-0-387-36836-8
Name Lee, Hakho
Ham, Donhee
Name ANZEIGE DER KETTE Ham, Donhee
Name Westervelt, Robert M.
T I T E L CMOS Biotechnology
Verlagsort Boston, MA
Verlag Springer US
Springer
Erscheinungsjahr 2007
2007
Umfang Online-Ressource (digital)
Reihe Series on Integrated Circuits and Systems
Notiz / Fußnoten Includes bibliographical references and index
Weiterer Inhalt Front Matter; Introduction; Introduction to Fluid Dynamics for Microfluidic Flows; Micro- and Nanofluidics for Biological Separations; CMOS/Microfluidic Hybrid Systems; CMOS-based Magnetic Cell Manipulation System; Applications of Dielectrophoresis-based Lab-on-a-chip Devices in Pharmaceutical Sciences and Biomedicine; CMOS Electronic Microarrays in Diagnostics and Nanotechnology; Integrated Microelectrode Arrays; CMOS ICs for Brain Implantable Neural Recording Microsystems; Optofluidic Microscope - Fitting a Microscope onto a Sensor Chip; CMOS Sensors for Optical Molecular Imaging. Back Matter. 1. Introduction, pt. I. Microfluids for electrical engineers2. Introduction to Fluid Dynamics for Microfluidic Flows -- 2.1 Introduction -- 2.2 Concepts Important to the Description of Fluid Motions -- 2.3 Electrical Networks and their Fluid Analogs -- 2.4 Basic Fluid Dynamics via the Governing Differential Equations -- 2.5 Model Flows -- 2.6 Conclusions and Outlook -- Acknowledgments -- References -- Author Biography -- 3. Micro- and Nanofluidics for Biological Separations -- 3.1 Introduction -- 3.2 Fabrication of Fluidic Structure -- 3.3 Biological Applications -- 3.4 Microfluidic Experiments -- 3.5 Microchannel Capillary Electrophoresis -- 3.6 Filled Microfluidic Channels -- 3.7 Fabricated Micro- and Nanostructures -- 3.8 Conclusions -- Acknowledgment -- References -- Author biography -- 4. CMOS/Microfluidic Hybrid Systems -- 4.1 Introduction -- 4.2 CMOS/Microfluidic Hybrid System -- Concept and Advantages -- 4.3 Fabrication of Microfluidic Networks for Hybrid Systems -- 4.4 Packaging of CMOS/Microfluidic Hybrid Systems -- 4.5 Conclusions and Outlook -- Acknowledgment -- References -- Author Biography -- pt. II. CMOS actuators -- 5. CMOS-based Magnetic Cell Manipulation System -- 5.1 Introduction -- 5.2 Principle of Magnetic Manipulation of Cells -- 5.3 Design of the CMOS IC Chip -- 5.4 Complete Cell Manipulation System -- 5.5 Experiment Setup -- 5.6 Demonstration of Magnetic Cell Manipulation System -- 5.7 Conclusions and Outlook -- Acknowledgment -- References -- Author Biography -- 6. Applications of Dielectrophoresis-based Lab-on-a-chip Devices in Pharmaceutical Sciences and Biomedicine -- 6.1 General Introduction -- 6.2 Dielectrophoresis-based Approaches -- 6.3 Dielectrophoresis based Lab-on-a-chip Platforms -- 6.4 Applications of Lab-on-a-chip to Pharmaceutical Sciences -- 6.5 Lab-on-a-chip for Biomedicine and Cellular Biotechnology -- 6.6 Future Perspectives: Integrated Sensors for Cell Biology -- 6.7 Conclusions -- Acknowledgment -- References -- Author Biography -- 7. CMOS Electronic Microarrays in Diagnostics and Nanotechnology -- 7.1 Introduction -- 7.2 Electronic Microarrays -- 7.3 Electronic Transport and Hybridization of DNA -- 7.4 Nanofabrication using CMOS Microarrays -- 7.5 Discussion and Conclusions -- References -- Author Biography -- pt. III. CMOS electrical sensors -- 8. Integrated Microelectrode Arrays -- 8.1 Introduction -- 8.2 Fundamentals of Recording of Electrical Cell Activity -- 8.3 Integrated CMOS-Based Systems -- 8.4 Measurement Results -- 8.5 Conclusions and Outlook -- Appendix -- Acknowledgment -- References -- Author Biography -- 9. CMOS ICs for Brain Implantable Neural Recording Microsystems -- 9.1 Introduction -- 9.2 Electrical Microsystem Overview -- 9.3 Preamplifier and Multiplexor Integrated Circuit -- 9.4 Digital Controller Integrated Circuit -- 9.5 Conclusions -- Acknowledgment -- References -- Author Biography -- pt. IV. CMOS optical sensors -- 10. Optofluidic Microscope -- Fitting a microscope onto a sensor chip -- 11. CMOS sensors for optical molecular imaging -- Index.
Titelhinweis Buchausg. u.d.T.: ‡CMOS biotechnology
ISBN ISBN 978-0-387-68913-5
Klassifikation TJFC
TEC008010
TCB
SCI010000
621.3815
621.38152
660.6
620
TK7888.4
ZN 4960
XC 4000
Kurzbeschreibung CMOS Biotechnology reviews the recent research and developments joining CMOS technology with biology. Written by leading researchers these chapters delve into four areas including: Microfluidics for electrical engineers CMOS Actuators CMOS Electrical Sensors CMOS Optical Sensors Bioanalytical instruments have been miniaturized on ICs to study various biophenomena or to actuate biosystems. These bio-lab-on-IC systems utilize the IC to facilitate faster, repeatable, and standardized biological experiments at low cost with a small volume of biological sample. CMOS Biotechnology will interest electrical engineers, bioengineers, biophysicists as well as researchers in MEMS, bioMEMS, microelectronics, microfluidics, and circuits and systems.
1. Schlagwortkette Biochip
CMOS
Mikrofluidik
Hybridtechnik
Online-Publikation
ANZEIGE DER KETTE Biochip -- CMOS -- Mikrofluidik -- Hybridtechnik -- Online-Publikation
SWB-Titel-Idn 26452537X
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-0-387-68913-5
Internetseite / Link Volltext
Siehe auch Inhaltsverzeichnis
Siehe auch Kapitel
Siehe auch Einführung/Vorwort
Siehe auch Cover
Kataloginformation500119192 Datensatzanfang . Kataloginformation500119192 Seitenanfang .
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