Positron emission tomography in neuroendocrine tumours.
Barbro Eriksson, Håkan Örlefors, Anders Sundin, Britt Skogseid, Bengt Långström, M. Bergström, Kjell Öberg
Abstract
Barbro Eriksson, Håkan Örlefors, Anders Sundin, Britt Skogseid, Bengt Långström, M. Bergström, Kjell Öberg
Abstract
Positron emission tomography is an in vivo tracer and imaging technique that utilizes short-lived positron emitting radionuclides (11C, 15O, 13N, 18F) with half-lives ranging between 2 min and 2 hours. These radionuclides are interesting from the labelling viewpoint since they are natural constituents of most biologically active compounds. The short half-life is an advantage with regard to the irradiation dose to the patient but it is also a limitation since it requires the production of these radionuclides in close vicinity to the positron emission tomography camera.
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Positron emission tomography is an in vivo tracer and imaging technique that utilizes short-lived positron emitting radionuclides (11C, 15O, 13N, 18F) with half-lives ranging between 2 min and 2 hours. These radionuclides are interesting from the labelling viewpoint since they are natural constituents of most biologically active compounds. The short half-life is an advantage with regard to the irradiation dose to the patient but it is also a limitation since it requires the production of these radionuclides in close vicinity to the positron emission tomography camera.
Key concepts: Positron emission tomography, Nuclear medicine, Medicine, Positron, Brain positron emission tomography, Positron emission, Radionuclide, Positron Emission Tomography-Computed Tomography