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This book provides a comprehensive overview of the nitrilimine 1,3-dipole, from its initial discovery in 1959 to the most recent publications. Covering topics such as the core properties of the dipole and the various methods of synthesis available, it particularly highlights the diverse reactivity profile of the nitrilimine and its numerous applications in bioorthogonal and materials chemistry. The book is of interest to academic and industrial researchers working in this area and to those new to the field.
Organic chemistry. --- Polymers . --- Proteins . --- Nanochemistry. --- Organic Chemistry. --- Polymer Sciences. --- Protein Structure. --- Nanoscale chemistry --- Chemistry, Analytic --- Nanoscience --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules --- Organic chemistry --- Chemistry --- Nitriles. --- Imines. --- Organonitrogen compounds --- Organic compounds --- Analytical chemistry
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"Nanoscale Graphitic Carbon Nitride focuses on multi-functional applications including energy conversion, storage and healthcare. Polymeric graphitic carbon nitride materials have attracted much attention in recent years because of their similarity to graphene. They are composed of carbon, nitrogen and some minor hydrogen content. In contrast to graphene, g-Graphitic carbon nitride is a medium band-gap semiconductor and in that role an effective photocatalyst and chemical catalyst for a broad variety of reactions and applications."--
Graphitic carbon nitride. --- Nanostructured materials. --- Nanomaterials --- Nanometer materials --- Nanophase materials --- Nanostructure controlled materials --- Nanostructure materials --- Ultra-fine microstructure materials --- Microstructure --- Nanotechnology --- Carbon nitride --- Polymers --- Graphitic carbon nitride --- Graphite --- Nitriles --- Nitrogen Compounds --- Nanostructures --- Properties. --- chemistry --- chemical synthesis --- chemistry. --- chemical synthesis.
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Glucosinolate-containing foods, such as vegetables from the plant order Brassicales and its derivative products, are valued for their health-beneficial properties. The latter are linked to glucosinolate hydrolysis products, such as isothiocyanates.The book “Advanced Research on Glucosinolates in Food Products” collects the latest research on the impact of the whole food supply chain, including production, as well as domestic food preparation, on glucosinolates and the formation and chemistry of their breakdown products in vegetables and further foods. In this context, the consequences for human health are important, too. The book contains articles that cover research on the effect of pre-harvest factors on glucosinolates, their hydrolyzing enzymes, and the formation of volatile hydrolysis products. Further topics include the linkage between glucosinolates and sensory aspects, and the effects of food preparation and follow-up reactivity. Finally, research on the bioavailability and functional effects of isothiocyanates for human health is included.
pickled vegetables --- yellowing salted radish root --- glucosinolate–myrosinase system --- tryptophan biosynthesis --- isothiocyanates --- glucosinolate --- cabbage --- isothiocyanate --- epithionitrile --- nitrile --- Brassica --- seasonal variation --- food retailer --- glucosinolates --- turnip --- bitter taste --- Brassicaceae --- vegetable --- rucola --- arugula --- Diplotaxis --- Eruca --- flavour --- postharvest --- volatile compounds --- odorants --- ‘salad’ rocket --- wasabi --- horseradish --- watercress --- benzyl isothiocyanate --- protein conjugates --- functional foods --- nasturtium --- garden cress --- thiourea --- plant growth --- protected horticulture --- environmental conditions --- cruciferous vegetables --- gluconasturtiin --- anti-inflammatory --- pro-inflammatory --- physiological-based model --- sulforaphane --- glucoraphanin --- compartmental model --- broccoli --- bioavailability --- myrosinase --- parameter estimation --- Brassica oleracea --- growing condition --- myrosinase activity --- glucosinolate hydrolysis products --- nitriles --- epithionitriles --- myrosinase stability: glucosinolates --- steaming --- microwaving --- stir-frying --- n/a --- glucosinolate-myrosinase system --- 'salad' rocket
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99mTc-sestamibi is a single-photon emission computed tomography (SPECT) radiotracer that was introduced into clinical routine for myocardial perfusion imaging more than two decades ago. Although today the main application of 99mTc-sestamibi SPECT remains the imaging of myocardial perfusion, it is also an accepted and well-proven imaging technique for a variety of oncologic and non-oncologic applications, including brain, breast, and thyroid cancer and thyroid and parathyroid adenoma. Its efficacy in a range of indications ensures that 99mTc-sestamibi SPECT will remain widely used despite the rapid diffusion of 18F-FDG PET. 99mTc-Sestamibi – Clinical Applications provides a detailed and informative overview of almost all the oncologic and non-oncologic applications of 99mTc-sestamibi SPECT, including several relatively rare indications. Different disease-related protocols for 99mTc-sestamibi SPECT are presented, and for each disease a comprehensive summary of the relevant pathology and epidemiology is provided. Throughout, there is a strong emphasis on the practical aspects of use of this popular tracer, including instructions for the preparation of several commercially available tracer kits. Clinical practitioners will find this book to be an invaluable guide to the application and benefits of 99mTc-sestamibi SPECT in both the inpatient and the outpatient setting.
Cardiology. --- Magnetic resonance imaging. --- Nuclear medicine. --- Oncology. --- Radiology, Medical. --- Single-photon emission computed tomography --- Diagnostic Techniques, Radioisotope --- Organotechnetium Compounds --- Diagnostic Imaging --- Investigative Techniques --- Nitriles --- Organometallic Compounds --- Diagnostic Techniques and Procedures --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Organic Chemicals --- Diagnosis --- Inorganic Chemicals --- Chemicals and Drugs --- Technetium Tc 99m Sestamibi --- Methods --- Radionuclide Imaging --- Medicine --- Health & Biological Sciences --- Radiology, MRI, Ultrasonography & Medical Physics --- Technetium --- Radioisotope scanning. --- Radioisotopes in medical diagnosis. --- Isotopes. --- Diagnostic radioisotopes --- Radiodiagnosis --- Radioisotopes --- Radioisotope scintigraphy --- Radionuclide imaging --- Scintigraphy, Radioisotope --- Diagnostic use --- Medicine. --- Radiology. --- Medicine & Public Health. --- Nuclear Medicine. --- Imaging / Radiology. --- Diagnostic imaging --- Radioactive tracers --- Radioactivity --- Radioisotopes in medical diagnosis --- Scanning systems --- Nuclear medicine --- Measurement --- Oncology . --- Tumors --- Heart --- Internal medicine --- Clinical radiology --- Radiology, Medical --- Radiology (Medicine) --- Medical physics --- Atomic medicine --- Radioisotopes in medicine --- Medical radiology --- Diseases --- Physiological effect --- Radiological physics --- Physics --- Radiation
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