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Showing 1 - 4 of 4 matches in All Departments
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 the benefit of the reader. The contributors address the economic aspects of biosensors and incorporate coverage of biosensor fabrication and nanobiosensors, among other topics. The comments, comparison, and discussion presented provides a better perspective of where the field of biosensors is heading.
"Biomarkers and Biosensors" offers thorough coverage of
biomarker/biosensor interaction, current research trends, and
future developments in applications of drug discovery. This book is
useful to researchers in this field as well as clinicians
interested in new developments in early detection and diagnosis of
disease or the mode of operation of biomarkers. "Biomarkers and
Biosensors" also emphasizes kinetics, and clearly delineates how
this influences the biomarker market.
A Fractal Analysis of Chemical Kinetics with Applications to Biological and Biosensor Interfaces analyzes the kinetics of binding and dissociation of different analytes by different biosensor techniques, demonstrating, and then comparing each other. Emphasis is on newer instrumentation techniques, such as surface plasmon resonance imaging (SPRi), and classical techniques, such as surface plasmon resonance (SPR), and finally, DNA biosensors and nanobiosensors. In addition, the closing chapter includes discussion of biosensor economics.
Biosensors are finding increasing applications in different areas.
Over the last few years the areas where biosensors may be used
effectively has increased dramatically. This book like the previous
four books on analyte-receptor binding and dissociation kinetics by
this author addresses the often neglected area. The kinetics of
binding and dissociation in solution to appropriate receptors
immobilized on biosensor surfaces occurs under diffusional
limitations on structured surfaces. The receptors immobilized on
the biosensor surface contribute to the degree of heterogeneity on
the sensor chip surface.
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