Sitarz Mateusz, Cussonneau Jean-Pierre, Matulewicz Tomasz, Haddad Férid
Groupement d'Intérêt Public ARRONAX, 44817, Saint-Herblain Cedex, France; Faculty of Physics, University of Warsaw, 02-093, Warszawa, Poland; Heavy Ion Laboratory, University of Warsaw, 02-093, Warszawa, Poland.
Subatech, CNRS/IN2P3, IMT Atlantique, Université de Nantes, CS 20722 44307, Nantes cedex, France.
Appl Radiat Isot. 2020 Jan;155:108898. doi: 10.1016/j.apradiso.2019.108898. Epub 2019 Sep 20.
Following the advancement of the Positron Emission Tomography (PET), a novel technique emerged which takes advantage of the gamma quanta emitted, in some cases, after the β+ decay. While Sc is commonly agreed the best choice to validate this new modality, other radioisotopes must also be considered in the future. We present them in this paper, along with their possible applications, properties and the optimal production routes with the use of the accelerators.
随着正电子发射断层扫描(PET)技术的发展,出现了一种新技术,该技术利用了在某些情况下β+衰变后发射的伽马量子。虽然普遍认为钪是验证这种新模态的最佳选择,但未来也必须考虑其他放射性同位素。我们在本文中介绍了它们,以及它们可能的应用、特性和使用加速器的最佳生产路线。