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Titlebook: Nuclear Oncology; From Pathophysiology H. William Strauss,Giuliano Mariani,Steven M. Lars Reference work 20172nd edition Springer Internati

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Martina Sollini,Sara Galimberti,Roberto Boni,Paola Anna Erbanticipation of global catastrophe will incite emancipation. It proposes a novel approach to enhancing foresight and avoid incubating disaster. It will appeal to readers interested in an original social science analysis of this creeping crisis and its resolution..
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Principles of Molecular Targeting for Radionuclide Therapyss of the bifunctional chelate and stability of the covalently bound halogens, matching the residence time in the tumor with the physical half-life of the radionuclide, the scale and scope of the disease, and the absorbed dose sensitivity of the targeted tumor compared to normal tissue. The principl
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Single-Photon-Emitting Radiopharmaceuticals for Diagnostic Applicationsme radiopharmaceuticals are simple, such as the ionic form of the radionuclide, while most radiopharmaceuticals have a complex chemical structure where the radionuclide provides a signal, indicating the site of localization of the carrier molecule..Common single-photon radiopharmaceuticals used for
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Radiopharmaceuticals for Therapyals are employed for therapy of differentiated follicular thyroid carcinomas,for therapy of pheochromocytoma/paraganglioma/neuroblastomas, for bone pain palliation, for radioimmunotherapy of lymphomas, for peptide radioreceptor therapy of neuroendocrine tumors, and for intra-arterial radioembolizati
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Novel Single-Photon-Emitting Radiopharmaceuticals for Diagnostic Applications. Nevertheless, both because the currently approved agents do not meet all the clinical needs for radionuclide targeting and because advancing knowledge in the pathophysiology of tissues/organs open in turn new opportunities, investigations continue at the preclinical and clinical validation level f
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Novel Positron-Emitting Radiopharmaceuticalsphy (SPECT) can provide clinicians with functional and biochemical information about tumor tissue that complement the anatomical data acquired through magnetic resonance imaging (MRI) and computed tomography (CT). In this chapter, we highlight a number of emerging radiotracers in oncology that are c
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