Nedjadi Youcef, Juget Frédéric, Durán M Teresa, Desorgher Laurent, Bochud François, Bailat Claude
Institut de Radiophysique, Lausanne, Switzerland.
Institut de Radiophysique, Lausanne, Switzerland.
Appl Radiat Isot. 2023 Oct;200:110986. doi: 10.1016/j.apradiso.2023.110986. Epub 2023 Aug 16.
Lu decays through low-energy β- and γ-emissions in addition to conversion and Auger electrons. To support the use of this radiopharmaceutical in Switzerland, a Lu solution was standardised using the β-γ coincidence technique, as well as the TDCR method. The solution had no Lu impurity. Primary coincidence measurements, with plastic scintillators for beta detection, were carried out using both analogue and digital electronics. TDCR measurements using only defocusing were also made. Monte Carlo calculations were used to compute the detection efficiency. The coincidence measurements with both analogue and digital electronics are compatible within one standard uncertainty, but they are lower than (and discrepant with) the TDCR measurements. An ampoule of this solution was submitted to the BIPM as a contribution to the Système International de Référence.