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Lab-on-a-chip : (Record no. 32056)

000 -LEADER
fixed length control field 06322cam a2200373Ia 4500
001 - CONTROL NUMBER
control field 7941136
003 - CONTROL NUMBER IDENTIFIER
control field BD-DhUL
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20150117141003.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 100308s2010 maua b 001 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 1596934182
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9781596934184
024 ## - OTHER STANDARD IDENTIFIER
Standard number or code 40018182495
035 ## - SYSTEM CONTROL NUMBER
System control number (OCoLC)ocn548660610
035 ## - SYSTEM CONTROL NUMBER
System control number (OCoLC)548660610
035 ## - SYSTEM CONTROL NUMBER
System control number (NNC)7941136
040 ## - CATALOGING SOURCE
Original cataloging agency BTCTA
Language of cataloging eng
Transcribing agency BTCTA
Modifying agency YDXCP
-- CDX
-- CIT
-- NhCcYBP
-- OrLoB-B
-- BD-DhUL
050 14 - LIBRARY OF CONGRESS CALL NUMBER
Classification number TK7875
Item number .G43 2010
082 04 - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number 621.381
Item number GHL
100 1# - MAIN ENTRY--PERSONAL NAME
Personal name Ghallab, Yehya H.
245 10 - TITLE STATEMENT
Title Lab-on-a-chip :
Remainder of title techniques, circuits, and biomedical applications /
Statement of responsibility, etc. Yahya H. Ghallab, Wael Badawy
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Place of publication, distribution, etc. Norwood, MA :
Name of publisher, distributor, etc. Artech House,
Date of publication, distribution, etc. c2010.
300 ## - PHYSICAL DESCRIPTION
Extent xv, 220 p. :
Other physical details ill. ;
Dimensions 24 cm.
490 1# - SERIES STATEMENT
Series statement Artech House integrated microsystems series
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc Includes bibliographic references and index.
505 00 - FORMATTED CONTENTS NOTE
Miscellaneous information 1.
Title Introduction to Lab-on-a-Chip --
Miscellaneous information 1.1.
Title History --
Miscellaneous information 1.2.
Title Parts and Components of Lab-on-a-Chip --
Miscellaneous information 1.2.1.
Title Electric and Magnetic Actuators --
Miscellaneous information 1.2.2.
Title Electrical Sensors --
Miscellaneous information 1.2.3.
Title Thermal Sensors --
Miscellaneous information 1.2.4.
Title Optical Sensors --
Miscellaneous information 1.2.5.
Title Microfluidic Chambers --
Miscellaneous information 1.3.
Title Applications of Lab-on-a-Chip --
Miscellaneous information 1.4.
Title Advantages and Disadvantages of Lab-on-a-Chip --
-- References --
Miscellaneous information 2.
Title Cell Structure, Properties, and Models --
Miscellaneous information 2.1.
Title Cell Structure --
Miscellaneous information 2.1.1.
Title Prokaryotic Cells --
Miscellaneous information 2.1.2.
Title Eukaryotic Cells --
Miscellaneous information 2.1.3.
Title Cell Components --
Miscellaneous information 2.2.
Title Electromechanics of Particles --
Miscellaneous information 2.2.1.
Title Single-Layer Model --
Miscellaneous information 2.2.2.
Title Double-Layer Model --
Miscellaneous information 2.3.
Title Electrogenic Cells --
Miscellaneous information 2.3.1.
Title Neurons --
Miscellaneous information 2.3.2.
Title Gated Ion Channels --
Miscellaneous information 2.3.3.
Title Action Potential --
-- References --
Miscellaneous information 3.
Title Cell Manipulator Fields --
Miscellaneous information 3.1.
Title Electric Field --
Miscellaneous information 3.1.1.
Title Uniform Electric Field (Electrophoresis) --
Miscellaneous information 3.1.2.
Title Nonuniform Electric Field (Dielectrophoresis) --
Miscellaneous information 3.2.
Title Magnetic Field --
Miscellaneous information 3.2.1.
Title Nonuniform Magnetic Field (Magnetophoresis) --
Miscellaneous information 3.2.2.
Title Magnetophoresis Force (MAP Force) --
-- References --
Miscellaneous information 4.
Title Metal-Oxide Semiconductor (MOS) Technology Fundamentals --
Miscellaneous information 4.1.
Title Semiconductor Properties --
Miscellaneous information 4.2.
Title Intrinsic Semiconductors --
Miscellaneous information 4.3.
Title Extrinsic Semiconductor --
Miscellaneous information 4.3.1.
Title N-Type Doping --
Miscellaneous information 4.3.2.
Title P-Type Doping --
Miscellaneous information 4.4.
Title MOS Device Physics --
Miscellaneous information 4.5.
Title MOS Characteristics --
Miscellaneous information 4.5.1.
Title Modes of Operation --
Miscellaneous information 4.6.
Title Complementary Metal-Oxide Semiconductor (CMOS) Device --
Miscellaneous information 4.6.1.
Title Advantages of CMOS Technology --
-- References --
Miscellaneous information 5.
Title Sensing Techniques for Lab-on-a-Chip --
Miscellaneous information 5.1.
Title Optical Technique --
Miscellaneous information 5.2.
Title Fluorescent Labeling Technique --
Miscellaneous information 5.3.
Title Impedance Sensing Technique --
Miscellaneous information 5.4.
Title Magnetic Field Sensing Technique --
Miscellaneous information 5.5.
Title CMOS AC Electrokinetic Microparticle Analysis System --
Miscellaneous information 5.5.1.
Title Bioanalysis Platform --
Miscellaneous information 5.5.2.
Title Experimental Tests --
-- References --
Miscellaneous information 6.
Title CMOS-Based Lab-on-a-Chip --
Miscellaneous information 6.1.
Title PCB Lab-on-a-Chip for Micro-Organism Detection and Characterization --
Miscellaneous information 6.2.
Title Actuation --
Miscellaneous information 6.3.
Title Impedance Sensing --
Miscellaneous information 6.4.
Title CMOS Lab-on-a-Chip for Micro-Organism Detection and Manipulation --
Miscellaneous information 6.5.
Title CMOS Lab-on-a-Chip for Neuronal Activity Detection --
Miscellaneous information 6.6.
Title CMOS Lab-on-a-Chip for Cytometry Applications --
Miscellaneous information 6.7.
Title Flip-Chip Integration --
-- References --
Miscellaneous information 7.
Title CMOS Electric-Field-Based Lab-on-a-Chip for Cell Characterization and Detection --
Miscellaneous information 7.1.
Title Design Flow --
Miscellaneous information 7.2.
Title Actuation --
Miscellaneous information 7.3.
Title Electrostatic Simulation --
Miscellaneous information 7.4.
Title Sensing --
Miscellaneous information 7.5.
Title The Electric Field Sensitive Field Effect Transistor (eFET) --
Miscellaneous information 7.6.
Title The Differential Electric Field Sensitive Field Effect Transistor (DeFET) --
Miscellaneous information 7.7.
Title DeFET Theory of Operation --
Miscellaneous information 7.8.
Title Modeling the DeFET --
Miscellaneous information 7.8.1.
Title A Simple DC Model --
Miscellaneous information 7.8.2.
Title SPICE DC Equivalent Circuit --
Miscellaneous information 7.8.3.
Title AC Equivalent Circuit --
Miscellaneous information 7.9.
Title The Effect of the DeFET on the Applied Electric Field Profile --
-- References --
Miscellaneous information 8.
Title Prototyping and Experimental Analysis --
Miscellaneous information 8.1.
Title Testing the DeFET --
Miscellaneous information 8.1.1.
Title The DC Response --
Miscellaneous information 8.1.2.
Title The AC (Frequency) Response --
Miscellaneous information 8.1.3.
Title Other Features of the DeFET --
Miscellaneous information 8.2.
Title Noise Analysis --
Miscellaneous information 8.2.1.
Title Noise Sources --
Miscellaneous information 8.2.2.
Title Noise Measurements --
Miscellaneous information 8.3.
Title The Effect of Temperature and Light on DeFET Performance --
Miscellaneous information 8.4.
Title Testing the Electric Field Imager --
Miscellaneous information 8.4.1.
Title The Response of the Imager Under Different Environments --
Miscellaneous information 8.4.2.
Title Testing the Imager with Biocells --
Miscellaneous information 8.5.
Title Packaging the Lab-on-a-Chip --
-- References --
Miscellaneous information 9.
Title Readout Circuits for Lab-on-a-Chip --
Miscellaneous information 9.1.
Title Current-Mode Circuits --
Miscellaneous information 9.2.
Title Operational Floating Current Conveyor (OFCC) --
Miscellaneous information 9.2.1.
Title A Simple Model --
Miscellaneous information 9.2.2.
Title OFCC with Feedback --
Miscellaneous information 9.3.
Title Current-Mode Instrumentation Amplifier --
Miscellaneous information 9.3.1.
Title Current-Mode Instrumentation Amplifier (CMIA) Based on CCII --
Miscellaneous information 9.3.2.
Title Current-Mode Instrumentation Amplifier Based on OFCC --
Miscellaneous information 9.4.
Title Experimental and Simulation Results of the Proposed CMIA --
Miscellaneous information 9.4.1.
Title The Differential Gain Measurements --
Miscellaneous information 9.4.2.
Title Common-Mode Rejection Ratio Measurements --
Miscellaneous information 9.4.3.
Title Other Features of the Proposed CMIA --
Miscellaneous information 9.4.4.
Title Noise Results --
Miscellaneous information 9.5.
Title Comparison Between Different CMIAs --
Miscellaneous information 9.6.
Title Testing the Readout Circuit with the Electric Field Based Lab-on-a-Chip --
-- References --
Miscellaneous information 10.
Title Current-Mode Wheatstone Bridge for Lab-on-a-Chip Applications --
Miscellaneous information 10.1.
Title Introduction --
Miscellaneous information 10.2.
Title CMWB Based on Operational Floating Current Conveyor --
Miscellaneous information 10.3.
Title A Linearization Technique Based on an Operational Floating Current Conveyor --
Miscellaneous information 10.4.
Title Experimental and Simulation Results --
Miscellaneous information 10.4.1.
Title The Differential Measurements --
Miscellaneous information 10.4.2.
Title Common-Mode Measurements --
Miscellaneous information 10.5.
Title Discussion --
-- References --
Miscellaneous information 11.
Title Current-Mode Readout Circuits for the pH Sensor --
Miscellaneous information 11.1.
Title Introduction --
Miscellaneous information 11.2.
Title Differential ISFET-Based pH Sensor --
Miscellaneous information 11.2.1.
Title ISFET-Based pH Sensor --
Miscellaneous information 11.2.2.
Title Differential ISFET Sensor --
Miscellaneous information 11.3.
Title pH Readout Circuit Based on an Operational Floating Current Conveyor --
Miscellaneous information 11.3.1.
Title Simulation Results --
Miscellaneous information 11.4.
Title pH Readout Circuit Using Only Two Operational Floating Current Conveyors --
Miscellaneous information 11.4.1.
Title Simulation Results --
-- References.
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Microelectromechanical systems.
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Chemical laboratories
General subdivision Electronic equipment.
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Biomedical engineering.
700 1# - ADDED ENTRY--PERSONAL NAME
Personal name Badawy, Wael.
830 #0 - SERIES ADDED ENTRY--UNIFORM TITLE
Uniform title Artech House integrated microsystems series.
900 ## - EQUIVALENCE OR CROSS-REFERENCE-PERSONAL NAME [LOCAL, CANADA]
Numeration TOC
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Source of classification or shelving scheme
Koha item type Books
948 1# - LOCAL PROCESSING INFORMATION (OCLC); SERIES PART DESIGNATOR (RLIN)
Series part designator, SPT (RLIN) 20100929
b (OCLC) c
c (OCLC) hew2
d (OCLC) MPS
Holdings
Price effective from Date last seen Permanent Location Not for loan Date acquired Source of classification or shelving scheme Koha item type Lost status Withdrawn status Source of acquisition Collection code Damaged status Shelving location Barcode Current Location Full call number
2015-01-172015-01-17Dhaka University Science Library 2012-11-20 Books  PurchasedNon Fiction General Stacks476415Dhaka University Science Library621.381 GHL
Last Updated on September 15, 2019
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