CERN Accelerating science

CERN Document Server Намерени са 2,022 записа  1 - 10следващкрай  отиване на запис: Търсенето отне 0.33 секунди. 
1.
Novel radionuclides for use in Nuclear Medicine in Europe: where do we stand and where do we go? / Radzina, Maija (Latvia U. ; CERN) ; Saule, Laura (Latvia U.) ; Mamis, Edgars (Latvia U. ; CERN) ; Koester, Ulli (Laue-Langevin Inst.) ; Cocolios, Thomas Elias (Leuven U.) ; Pajuste, Elina (Latvia U.) ; Kalnina, Marika (Unlisted) ; Palskis, Kristaps (CERN ; Riga Tech. U.) ; Sawitzki, Zoe (Leuven U.) ; Talip, Zeynep (PSI, Villigen) et al.
Background In order to support the ongoing research across Europe to facilitate access to novel radionuclides, the PRISMAP consortium (European medical radionuclides programme) was established to offer the broadest catalog of non-conventional radionuclides for medical and translational research. The aim of this article is to introduce readers with current status of novel radionuclides in Europe. Main body A consortium questionnaire was disseminated through the PRISMAP consortium and user community, professional associations and preclinical/clinical end users in Europe and the current status of clinical end-users in nuclear medicine were identified. [...]
2023 - 16 p. - Published in : EJNMMI Radiopharm. Chem. 8 (2023) 27 Fulltext: PDF;
2.
Production of innovative radionuclides for medical applications at the CERN-MEDICIS facility / CERN-MEDICIS Collaboration
Since its commissioning in December 2017, the CERN-MEDICIS facility has been providing non-conventional radionuclides for research in nuclear medicine. Benefitting from decades of experience in the production of radioactive ion beams and in the mass separation process from the ISOLDE facility at CERN, MEDICIS quickly became a worldwide key player in the supply of novel medical isotopes dedicated to research in the fields of cancer imaging, diagnostics, and radiation therapy. [...]
2023 - 7 p. - Published in : Nucl. Instrum. Methods Phys. Res., B 542 (2023) 137-143
In : 19th International Conference on Electromagnetic Isotope Separators and Related Topics (EMIS 2022), Daejeon, Korea, 3 - 7 Oct 2022, pp.137-143
3.
“Particle therapy - future for the Baltic states?” – synthesis of the expert workshop report / Paļskis, Kristaps (Riga Tech. U. ; CERN) ; Korobeinikova, Erika ; Bogorada-Saukuma, Dace ; Camarda, Anna Maria (CNAO, Milan) ; Taylor, Rebecca (CERN ; Imperial Coll., London) ; Benedetto, Elena ; Mamis, Edgars (CERN ; Latvia U.) ; Radziņa, Maija ; Ērglis, Andrejs (Latvia U.) ; Adliene, Diana et al.
Background Baltic States remains one of the few regions in the Europe without a dedicated particle therapy center. An initiative since 2021 has been started by CERN Baltic Group on a novel particle therapy center development in the region in partnership with CERN NIMMS collaboration. [...]
2024 - 8 p. - Published in : Health Technol. 14 (2024) 965-972 Fulltext: PDF;
4.
Chemical Purification of Terbium-155 from Pseudo-Isobaric Impurities in a Mass Separated Source Produced at CERN / Webster, Ben (Teddington, Natl. Phys. Lab ; Surrey U.) ; Ivanov, Peter (Teddington, Natl. Phys. Lab) ; Russell, Ben (Teddington, Natl. Phys. Lab) ; Collins, Sean (Teddington, Natl. Phys. Lab) ; Stora, Thierry (CERN) ; Ramos, Joao Pedro (CERN ; Leuven U.) ; Köster, Ulli (Laue-Langevin Inst.) ; Robinson, Andrew Paul (Teddington, Natl. Phys. Lab ; Manchester U.) ; Read, David (Teddington, Natl. Phys. Lab ; Surrey U.)
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. [...]
2019 - Published in : Sci. Rep. 9 (2019) 10884 fulltext from publisher: PDF;
5.
Production of Mass-Separated Erbium-169 Towards the First Preclinical in vitro Investigations / Talip, Zeynep (PSI, Villigen) ; Borgna, Francesca (PSI, Villigen) ; Müller, Cristina (PSI, Villigen ; ETH, Zurich (main)) ; Ulrich, Jiri (PSI, Villigen) ; Duchemin, Charlotte (CERN ; Leuven U.) ; Ramos, Joao P (CERN ; Leuven U.) ; Stora, Thierry (CERN) ; Köster, Ulli (Laue-Langevin Inst.) ; Nedjadi, Youcef (Lausanne U.) ; Gadelshin, Vadim (CERN ; Mainz U., Inst. Phys. ; Urals State U.) et al.
The $\beta^-$-particle-emitting erbium-169 is a potential radionuclide toward therapy of metastasized cancer diseases. It can be produced in nuclear research reactors, irradiating isotopically-enriched $^{168}$Er$_2$O$_3$ [...]
2021 - 11 p. - Published in : Frontiers in Medicine 8 (2021) 643175 Fulltext: PDF;
6.
Encouraging mature user behaviour in the end-user computing environment / Stevens, D F
LBL-25279.
- 1988. - 10 p.
CERN library copies
7.
Target Development towards First Production of High-Molar- Activity $^{44g}$Sc and $^{47}$Sc by Mass Separation at CERN-MEDICIS / Mamis, Edgars (CERN ; Latvia U.) ; Duchemin, Charlotte (CERN) ; Berlin, Valentina (CERN) ; Bernerd, Cyril (CERN) ; Bovigny, Mathieu (CERN) ; Chevallay, Eric (CERN) ; Crepieux, Bernard (CERN) ; Gadelshin, Vadim Maratovich (Mainz U., Inst. Phys.) ; Heinke, Reinhard (CERN) ; Hernandez, Ronaldo Mendez (CERN ; Havana, ISCTN) et al.
The radionuclides 43Sc,  44g/mSc, and 47Sc can be produced cost-effectively in sufficient yield for medical research and applications by irradiating  natTi and  natV target materials with protons. Maximizing the production yield of the therapeutic 47Sc in the highest cross section energy range of 24–70 MeV results in the co-production of long-lived, high-γ-ray-energy 46Sc and 48Sc contaminants if one does not use enriched target materials. [...]
2024 - 28 p. - Published in : Pharmaceuticals 17 (2024) 390 Fulltext: PDF;
8.
First laser ions at the CERN-MEDICIS facility / MEDICIS Collaboration
The CERN-MEDICIS facility aims to produce emerging medical radionuclides for the theranostics approach in nuclear medicine with mass separation of ion beams. To enhance the radioisotope yield and purity of collected samples, the resonance ionization laser ion source MELISSA was constructed, and provided the first laser ions at the facility in 2019. [...]
2020 - 9 p. - Published in : Hyperfine Interact. 241 (2020) 55 Fulltext: PDF;
9.
Production Cross-Section Measurements for Terbium Radionuclides of Medical Interest Produced in Tantalum Targets Irradiated by 0.3 to 1.7 GeV Protons and Corresponding Thick Target Yield Calculations / Duchemin, Charlotte (Leuven U. ; CERN) ; Cocolios, Thomas E (Leuven U.) ; Dockx, Kristof (Leuven U.) ; Farooq-Smith, Gregory J (Leuven U.) ; Felden, Olaf (Julich, Forschungszentrum) ; Formento-Cavaier, Roberto (Unlisted, IT) ; Gebel, Ralf (Julich, Forschungszentrum) ; Köster, Ulli (Laue-Langevin Inst.) ; Neumaier, Bernd (Julich, Forschungszentrum) ; Scholten, Bernhard (Julich, Forschungszentrum) et al.
This work presents the production cross-sections of Ce, Tb and Dy radionuclides produced by 300 MeV to 1.7 GeV proton-induced spallation reactions in thin tantalum targets as well as the related Thick Target production Yield (TTY) values and ratios. The motivation is to optimise the production of terbium radionuclides for medical applications and to find out at which energy the purity of the collection by mass separation would be highest. [...]
2021 - Published in : Frontiers in Medicine 8 (2021) 625561 fulltext from publisher: PDF;
10.
Bitmap indices for fast end-user physics analysis in ROOT / Stockinger, K ; Brun, R ; Canal, P ; Wu, K
2006 - Published in : Nucl. Instrum. Methods Phys. Res., A 559 (2006) 99-102

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