Accelerator-based techniques with electromagnetic mass separation are considered among the most innovative and promising strategies to produce non-conventional radionuclides for nuclear medicine. Such approach was successfully used at CERN, where the dedicated MEDICIS facility was built, and at TRIUMF, where the ISAC radioactive beam facility was used to produce unconventional α-emitters. In such framework, the Legnaro National Laboratories of the Italian Institute of Nuclear Physics (INFN-LNL) proposed the ISOLPHARM project (ISOL technique for radioPHARMaceuticals), which will exploit radionuclides producible with the SPES (Selective Production of Exotic Species) ISOL (Isotope Separation On-Line) facility to develop novel radiopharmaceutic...
The demand for intensity, purity, reliability and availability of short-lived isotopes far from stab...
Last years have become very productive for the research, construction and development of new facilit...
The ISAC facility (Isotope Separation and Acceleration) at TRIUMF has recently started to provide is...
Radionuclides for radiopharmaceuticals can be produced in cyclotrons or nuclear reactors. Each of th...
Research in the field of radiopharmaceuticals is increasingly promoted by the widespread and growing...
Radionuclides of interest in nuclear medicine are generally produced in cyclotrons or nuclear reacto...
Radionuclides of interest in nuclear medicine are generally produced in cyclotrons or nuclear reacto...
Invited contributionThe production of medical radioisotopes is largely dominated by neutron capture ...
An innovative method is proposed for the production of carrier-free \uf062- radiopharmaceuticals, ba...
The Isotope Separation On-Line (ISOL) technique is today established as one of the primary methods t...
Radioactive ion beams are produced at the Holifield Radioactive Ion Beam Facility using the ISOL (Is...
The production of medical radioisotopes is largely dominated by neutron capture at nuclear reactors ...
The ISOLPHARM (ISOL technique for radioPHARMaceuticals) project is dedicated to the development of h...
The ISOLDE facility at CERN is the world leading on On-Line Isotope Separator installation. The main...
AbstractThe demand for intensity, purity, reliability and availability of short-lived isotopes far f...
The demand for intensity, purity, reliability and availability of short-lived isotopes far from stab...
Last years have become very productive for the research, construction and development of new facilit...
The ISAC facility (Isotope Separation and Acceleration) at TRIUMF has recently started to provide is...
Radionuclides for radiopharmaceuticals can be produced in cyclotrons or nuclear reactors. Each of th...
Research in the field of radiopharmaceuticals is increasingly promoted by the widespread and growing...
Radionuclides of interest in nuclear medicine are generally produced in cyclotrons or nuclear reacto...
Radionuclides of interest in nuclear medicine are generally produced in cyclotrons or nuclear reacto...
Invited contributionThe production of medical radioisotopes is largely dominated by neutron capture ...
An innovative method is proposed for the production of carrier-free \uf062- radiopharmaceuticals, ba...
The Isotope Separation On-Line (ISOL) technique is today established as one of the primary methods t...
Radioactive ion beams are produced at the Holifield Radioactive Ion Beam Facility using the ISOL (Is...
The production of medical radioisotopes is largely dominated by neutron capture at nuclear reactors ...
The ISOLPHARM (ISOL technique for radioPHARMaceuticals) project is dedicated to the development of h...
The ISOLDE facility at CERN is the world leading on On-Line Isotope Separator installation. The main...
AbstractThe demand for intensity, purity, reliability and availability of short-lived isotopes far f...
The demand for intensity, purity, reliability and availability of short-lived isotopes far from stab...
Last years have become very productive for the research, construction and development of new facilit...
The ISAC facility (Isotope Separation and Acceleration) at TRIUMF has recently started to provide is...