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This book presents an overview of up-converting phosphor (UCP), including UCP preparation, development of the rapid detection strips and UCP industrialization. It also discusses the wide clinical applications of this technology, such as in food poisoning, infectious diseases, drug-abuse and disaster rescue, where rapid point-of-care testing is often critical. Conventional testing methods are mainly based on gold immunochromatography, which relies heavily on results being read with the naked eye. However, up-converting phosphor technology (UPT) employs UCP particles as labels for rapid target detection. Unlike other conventional fluorescence techniques, UCP is excited by infrared light and emitted visible light. This anti-stokes phenomenon provides this special label with significant advantages, including zero background detection, high resistance to environmental influences (e.g. pH, salts, sample contamination), high sensitivity and quantitative detection.
Systematically summarizing UCP technology and its wide applications, this book is a valuable resource for researchers and technicians in the field.
Presenting an overview of up-concerting phosphor (UCP) Discussing the wide clinical applications of this technology, such as in food poisoning, infectious diseases, drug-abuse and disaster rescue Serving as a valuable resource for researchers and technicians in the field
Auteur
Dr. Ruifu Yang is a Professor at the Beijing Institute of Microbiology and Epidemiology and the Chief Scientist for the National Basic Research Program (973 Program). He is also the vice president of the Chinese Society for Microbiology. His research focuses on investigating bacterial pathogenesis using genomics- and proteomics-based techniques. He has published more than 200 articles on leading international journals, such as the New England Journal of Medicine, Nature Genetics, PNAS, Clinical Infectious Diseases, and ISME Journal etc.
Texte du rabat
This book presents an overview of up-concerting phosphor (UCP), including UCP preparation, development of the rapid detection strips and UCP industrialization. It also discusses the wide clinical applications of this technology, such as in food poisoning, infectious diseases, drug-abuse and disaster rescue, where rapid point-of-care testing is often critical. Conventional testing methods are mainly based on gold immunochromatography, which relies heavily on results being read with the naked eye. However, up-converting phosphor technology (UPT) employs UCP particles as labels for rapid target detection. Unlike other conventional fluorescence techniques, UCP is excited by infrared light and emitted visible light. This anti-stokes phenomenon provides this special label with significant advantages, including zero background detection, high resistance to environmental influences (e.g. pH, salts, sample contamination), high sensitivity and quantitative detection.
Systematically summarizing UCP technology and its wide applications, this book is a valuable resource for researchers and technicians in the field.
Contenu
Upconversion luminescent materials: properties and luminescence mechanisms.- Synthesis and preparation of upconverting phosphor particles.- Modification and Functionalization of Up-Converting Phosphor Particles.- Upconvertion nanoparticles-based point-of-care testing technology.- Up-converting phosphor technology-based biosensing technology.- Industrialization of up-converting phosphor diagnostic products.- The application of UPT-POCT in emergency medicine.- The application of UPT-POCT in internal medicine.- The application of UPT-POCT in combat-related traumatic infection.- Application of UPT-POCT for medical relief in disasters.- Application of UPT-POCT for detection of foodborne pathogens.- Applications of UCNPs in the detection of food safety related mycotoxins.- The application of UPT-POCT in public health emergencies.- Applications of UPT-POCT in Import and Export Quarantine.- Application of UPT-POCT in detection of drugs.- Applications of UPT-POCT in anti-bioterrorism and biosecurity.- Applications of UCNPs in bio-imaging and treatment