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Assessment of personnel absorbed dose at an 18-MeV dual beam cyclotron facility |
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| Y. Alashban, N. Shubayr, M. Almalki, S. Albeshan, A.M. Aldosari |
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| Radiation Physics and Chemistry. 2021; 180: 109298 |
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| [Pubmed] [Google Scholar] [DOI] |
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2 |
LEVELS OF EXPOSURE TO IONIZING RADIATION AMONG THE PERSONNEL ENGAGED IN CYCLOTRON OPERATION AND THE PERSONNEL ENGAGED IN THE PRODUCTION OF RADIOPHARMACEUTICALS, BASED ON RADIATION MONITORING SYSTEM |
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| Michal Biegala, Teresa Jakubowska |
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| Radiation Protection Dosimetry. 2020; 189(1): 56 |
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3 |
A “dose on demand” Biomarker Generator for automated production of [18F]F- and [18F]FDG |
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| V. Awasthi,J. Watson,H. Gali,G. Matlock,A. McFarland,J. Bailey,A. Anzellotti |
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| Applied Radiation and Isotopes. 2014; 89: 167 |
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4 |
Radiologic assessment of a self-shield with boron-containing water for a compact medical cyclotron |
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| Genki Horitsugi, Toshioh Fujibuchi, Ichiro Yamaguchi, Akihisa Eto, Yasuo Iwamoto, Hiromi Hashimoto, Seiki Hamada, Satoshi Obara, Hiroshi Watanabe, Jun Hatazawa |
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| Radiological Physics and Technology. 2012; |
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5 |
Comparison of neutron fluxes in an 18-MeV unshielded cyclotron room and a 16.5-MeV self-shielded cyclotron room |
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| Toshioh Fujibuchi, Genki Horitsugi, Ichiro Yamaguchi, Akihisa Eto, Yasuo Iwamoto, Satoshi Obara, Takashi Iimori, Yoshitada Masuda, Hiroshi Watanabe, Jun Hatazawa |
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| Radiological Physics and Technology. 2012; |
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6 |
Argon activation in air at medical cyclotron rds eclipse during production of 18F |
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| Bezshyyko, O.A., Golinka-Bezshyyko, L.O., Kadenko, I.M. |
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| Problems of Atomic Science and Technology. 2009; 5: 37-39 |
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7 |
Target foil rupture scenario and provision for handling different models of medical cyclotrons used in India |
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| Shaiju, V., Sharma, S., Kumar, R., Sarin, B. |
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| Journal of Medical Physics. 2009; 34(3): 161-166 |
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