Biosensors are expected to play an expanding role in the early detection and treatment of cancer. Addressing cancer molecular diagnostics from the perspective of biosensors and biodetection, this book examines the technology and applications of a range of sensor systems, including optical, electrochemical, and optomechanical sensors. Each chapter presents a different biosensor-based technology and then explains their limitations, how the sensors are created, how they function, and how they can be applied. The text also reviews allied subjects, such as ligands, molecular markers, and…mehr
Biosensors are expected to play an expanding role in the early detection and treatment of cancer. Addressing cancer molecular diagnostics from the perspective of biosensors and biodetection, this book examines the technology and applications of a range of sensor systems, including optical, electrochemical, and optomechanical sensors. Each chapter presents a different biosensor-based technology and then explains their limitations, how the sensors are created, how they function, and how they can be applied. The text also reviews allied subjects, such as ligands, molecular markers, and microfluidics, that are essential to understanding and developing new sensing technologies.
Keith E. Herold is an associate professor in the Fischell Department of Bioengineering at the University of Maryland. A fellow of the ASME, Dr. Herold has over 10 years of experience in the analysis and testing of biosensor systems. His current research interests include bioMEMS, microfluidic systems for bioanalytical assays, and heat and mass transfer in bioengineering. Avraham Rasooly is the chief of the Disparities Research Branch at the National Cancer Institute and a member of the Division of Biology in the Center for Devices and Radiological Health at the U.S. Food and Drug Administration.
Inhaltsangabe
Introduction. Optical Technologies for Cancer Detection and Diagnostics: Surface Plasmon Resonance. Optical Technologies for Cancer Detection and Diagnostics: Evanescent Wave and Waveguide Biosensors. Optical Technologies for Cancer Detection and Diagnostics: Spectrometry for Cancer Analysis. Optical Technologies for Cancer Detection and Diagnostics: Optical Imaging for Cancer Analysis. Optical Technologies for Cancer Detection and Diagnostics: Fluorescence, Luminescence, Refractive Index Detection Technologies. Optical Technologies for Cancer Detection and Diagnostics: Photoacoustic for Cancer Analysis. Electrochemical Biosensors. Electronic and Magnetic Technologies for Cancer Analysis. Thermometric Sensing. Cantilever-Based Technology. Index.
Introduction. Optical Technologies for Cancer Detection and Diagnostics: Surface Plasmon Resonance. Optical Technologies for Cancer Detection and Diagnostics: Evanescent Wave and Waveguide Biosensors. Optical Technologies for Cancer Detection and Diagnostics: Spectrometry for Cancer Analysis. Optical Technologies for Cancer Detection and Diagnostics: Optical Imaging for Cancer Analysis. Optical Technologies for Cancer Detection and Diagnostics: Fluorescence, Luminescence, Refractive Index Detection Technologies. Optical Technologies for Cancer Detection and Diagnostics: Photoacoustic for Cancer Analysis. Electrochemical Biosensors. Electronic and Magnetic Technologies for Cancer Analysis. Thermometric Sensing. Cantilever-Based Technology. Index.
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