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Record Nr. |
UNINA9911004756503321 |
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Autore |
Sadana Ajit |
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Titolo |
Handbook of biosensors and biosensor kinetics / / Ajit Sadana, Neeti Sadana |
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Pubbl/distr/stampa |
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Amsterdam, : Elsevier, 2011 |
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ISBN |
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1-282-76916-2 |
9786612769160 |
0-08-093285-1 |
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Edizione |
[1st ed.] |
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Descrizione fisica |
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1 online resource (536 p.) |
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Altri autori (Persone) |
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Disciplina |
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Soggetti |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Front cover; Handbook of Biosensors and Biosensor Kinetics; Copyright page; Contents; Preface; Chapter 1: Introduction; 1.1. Introduction; 1.2. Biosensor Markets and Economics; 1.3. Chapter Contents; Chapter 2: Modeling and Theory; 2.1. Introduction; 2.2. Theory; Chapter 3: Fabrication of Biosensors; 3.1. Introduction; 3.2. Different Methods of Biosensor Fabrication; 3.3. Conclusions; Chapter 4: Biosensors Involved in Drug Discovery; 4.1. Introduction; 4.2. Theory; 4.3. Results; 4.4. Conclusions; Chapter 5: Nanobiosensors; 5.1. Introduction |
5.2. Optical Dna Detection By Multifunctional Cross-Linked Au Nanoaggregates (Li Et al., 2009)5.3. High-Performance Multiplexed Determination of Proteins: Determinations of Cancer Biomarkers in Serum and Saliva Using Qd; 5.4. Carbon Nanofiber Paste Electrode Nonenzymatic Glucose Sensor (Liu Et al., 2009); 5.5. Use of Gold Nanoparticles in a Sensitive Immunochromatographic Assay for the Detection of Psa in Serum (Nagatani Et al.,; 5.6. In Vitro Characterization of an Intracellular Nanosensor For Ros (Henderson Et al., 2009) |
5.7. Combined Fluorescence and Sers Molecular Beacon Assay To Detect Human Viral Rna (Sha Et al., 2007)5.8. Nanotube-Based |
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Biosensor for the Detection of Disease-Specific Autoantibodies in Human Serum (Drouvalakis Et al., 2008).; 5.9. Gold Nanoparticle Amperometric Immunosensor (Biosensor) For Opg (Singh Et al., 2008); 5.10. Label-Free Antigen-Antibody Binding on a Gold Nanoparticle Sensor Array (Olkhov and Shaw, 2008); 5.11. Electrochemical Immunosensing Using Magnetic Beads and Gold Nanocatalysts (Selvaraju Et al., 2007); 5.12. Conclusions |
Chapter 6: Binding of the Same Analyte to Different Biosensor Surfaces6.1. Introduction; 6.2. Theory; 6.3. Results; 6.5. Conclusions; Chapter 7: Binding of the Same Analyte (Glucose) to Different Biosensor Surfaces; 7.1. Introduction; 7.2. Theory; 7.3. Results; 7.4. Conclusions; Chapter 8: Medical Applications of Biosensors; 8.1. Introduction; 8.2. Theory; 8.3. Results; 8.4. Conclusions; Chapter 9: Physiological Cellular Reactions Detection on Biosensor Surfaces; 9.1. Introduction; 9.2 Theory; 9.3. Results; 9.4. Conclusions; Chapter 10: Detection of Gases on Biosensor Surfaces |
10.1. Introduction10.2. Theory; 10.3. Results; 10.4. Conclusions; Chapter 11: Detection of Analytes on Arrays/Microarrays/Dna Chips; 11.1. Introduction; 11.2. Theory; 11.3. Results; 11.4. Conclusions; Chapter 12: Binding and Dissociation Kinetics of Different Analytes on Novel Biosensing Surfaces; 12.1. Introduction; 12.2 Theory; 12.3 Results; 12.4 Conclusions; Chapter 13: Binding of Different Analytes on Biosensor Surfaces; 13.1. Introduction; 13.2. Theory; 13.3. Results; 13.4. Conclusions; Chapter 14: Toxins and Pollutants Detection on Biosensor Surfaces; 14.1. Introduction; 14.2. Theory |
14.3. Results |
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Sommario/riassunto |
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Biosensors are essential to an ever-expanding range of applications, including healthcare; drug design; detection of biological, chemical, and toxic agents; environmental monitoring; biotechnology; aviation; physics; oceanography; and the protection of civilian and engineering infrastructures. This book, like the previous five books on biosensors by this author (and one by the co-author), addresses the neglected areas of analyte-receptor binding and dissociation kinetics occurring on biosensor surfaces. Topics are covered in a comprehensive fashion, with homogeneous presentation for |
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