Four terbium radioisotopes ($^{149, 152, 155, 161}$Tb) constitute a potential theranostic quartet for cancer treatment but require any derived radiopharmaceutical to be essentially free of impurities. Terbium-155 prepared by proton irradiation and on-line mass separation at the CERN-ISOLDE and CERN-MEDICIS facilities contains radioactive$^{139}$Ce$^{16}$O and also zinc or gold, depending on the catcher foil used. A method using ion-exchange and extraction chromatography resins in two column separation steps has been developed to isolate$^{155}$Tb with a chemical yield of ≥95% and radionuclidic purity ≥99.9%. Conversion of terbium into a form suitable for chelation to targeting molecules in diagnostic nuclear medicine is presented. The resul...
Nuclear imaging has a wide range of applications in both medicine and in industry, such as diagnosti...
International audienceHIGHLIGHTS • The medical interest of terbium-155. • Deuteron induced reactions...
International audienceA new facility, named CERN-MEDICIS, is under construction at CERN to produce r...
Four terbium radioisotopes (149, 152, 155, 161Tb) constitute a potential theranostic quartet for can...
Nuclear medicine is used to diagnose and treat a number of disorders and diseases and is an essentia...
Abstract Background Terbium-155 [T1/2 = 5.32 d, Eγ = 87 keV (32%) 105 keV (25%)] is an interesting r...
"This research aimed to develop robust and thorough chemical separation procedures to support the de...
Terbium-152 is one of four terbium radioisotopes that together form a potential theranostic toolbox ...
International audienceTerbium is a chemical element that has several radioactive isotopes with suita...
Terbium-152 (Tb-152) is of potential value as a radiotracer for radiolanthanides in positron emissio...
155Tb [t1/2 = 5.32 d, Eγ = 87 keV (32%); 105 keV (25%) (IAEA, 2021)] is a novel promising radionucli...
155Tb [t1/2 = 5.32 d, Eγ = 87 keV (32%); 105 keV (25%) (IAEA, 2021)] is a novel promising radionucli...
Terbium offers 4 clinically interesting radioisotopes with com-plementary physical decay characteris...
Nuclear medicine is a scientific branch that makes use of radioactive nuclei to diagnose and treat c...
Nuclear imaging has a wide range of applications in both medicine and in industry, such as diagnosti...
International audienceHIGHLIGHTS • The medical interest of terbium-155. • Deuteron induced reactions...
International audienceA new facility, named CERN-MEDICIS, is under construction at CERN to produce r...
Four terbium radioisotopes (149, 152, 155, 161Tb) constitute a potential theranostic quartet for can...
Nuclear medicine is used to diagnose and treat a number of disorders and diseases and is an essentia...
Abstract Background Terbium-155 [T1/2 = 5.32 d, Eγ = 87 keV (32%) 105 keV (25%)] is an interesting r...
"This research aimed to develop robust and thorough chemical separation procedures to support the de...
Terbium-152 is one of four terbium radioisotopes that together form a potential theranostic toolbox ...
International audienceTerbium is a chemical element that has several radioactive isotopes with suita...
Terbium-152 (Tb-152) is of potential value as a radiotracer for radiolanthanides in positron emissio...
155Tb [t1/2 = 5.32 d, Eγ = 87 keV (32%); 105 keV (25%) (IAEA, 2021)] is a novel promising radionucli...
155Tb [t1/2 = 5.32 d, Eγ = 87 keV (32%); 105 keV (25%) (IAEA, 2021)] is a novel promising radionucli...
Terbium offers 4 clinically interesting radioisotopes with com-plementary physical decay characteris...
Nuclear medicine is a scientific branch that makes use of radioactive nuclei to diagnose and treat c...
Nuclear imaging has a wide range of applications in both medicine and in industry, such as diagnosti...
International audienceHIGHLIGHTS • The medical interest of terbium-155. • Deuteron induced reactions...
International audienceA new facility, named CERN-MEDICIS, is under construction at CERN to produce r...