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Titlebook: Locoregional Radionuclide Cancer Therapy; Clinical and Scienti Franklin C.L. Wong Book 2021 Springer Nature Switzerland AG 2021 locoregiona

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Locoregional Therapy: Cancer Interventions with and Without Radionuclides,oregional tumor control. Therapies covered include the endovascular techniques of chemotherapy infusion, chemoembolization, and radioembolization for hepatic tumors, as well as the percutaneous techniques of thermal ablation for hepatic, renal, pulmonary, and musculoskeletal tumors.
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Locoregional Radionuclide Cancer Therapy (LRCT) Using Sealed and Unsealed Radionuclides,diopharmaceuticals for LRCT such as sealed versus unsealed radiopharmaceuticals, those with versus those without tumor affinity, and particulate versus soluble forms. These choices will allow treating human cancer with less toxic and more efficacious applications.
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Radionuclide Cancer Therapy: Unsealed Alpha- and Beta-Emitters,rent radionuclides emitting beta radiations, or radiopharmaceuticals emitting both beta and gamma emissions, theranostic approaches may be accomplished. The current clinical uses of these radiopharmaceuticals in treating cancer are described in this chapter. Potential uses and clinical trials are also reviewed.
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Voxel-Based Targeted Radionuclide Therapy Dosimetry,antitative imaging, the use of a streamline 3D dosimetric software with functions of volume-of-interest segmentation, image registration, time-activity-curve fitting and dose conversion is essential to assess the 3D tumor and critical organ absorbed dose distribution for clinical practice.
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Locoregional Unsealed Radionuclide Cancer Therapy: Experimental Findings, be accomplished using gamma cameras, PET scanners, or optical imaging. Surprising findings of immunity from subsequent inoculation of tumors are noted in rats cured from earlier tumor by LRCT. These interesting and surprise findings and their implications are also explored.
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Book 2021 includes a diversity of choices of well characterized biochemical and physiologic target molecules. The delivery and retention of radionuclides may be monitored by advanced imaging for exact tissue localization and for real-time dosimetry to enable personalized precision medicine. Radiopharmaceutic
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0075-8450 s subsequently developed further to discuss various reconstructions that silicene acquires due to interactions with the substrate and how such effects are mirrored in the electronic properties. Next the bo978-3-319-46570-8978-3-319-46572-2Series ISSN 0075-8450 Series E-ISSN 1616-6361
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