Experimental study of the excitation functions of proton induced nuclear reactions on (167)Er for production of medically relevant (167)Tm.
Identifieur interne : 000C43 ( Main/Exploration ); précédent : 000C42; suivant : 000C44Experimental study of the excitation functions of proton induced nuclear reactions on (167)Er for production of medically relevant (167)Tm.
Auteurs : F. Tárkányi [Hongrie] ; A. Hermanne ; S. Takács ; B. Király ; I. Spahn ; A V IgnatyukSource :
- Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine [ 1872-9800 ] ; 2010.
Descripteurs français
- KwdFr :
- MESH :
- effets des radiations : Erbium, Isotopes, Radiopharmaceutiques, Thulium.
- synthèse chimique : Radiopharmaceutiques.
- Erbium, Isotopes, Modèles chimiques, Photons, Radio-isotopes, Simulation numérique, Thulium.
English descriptors
- KwdEn :
- MESH :
- chemical , chemical synthesis : Radiopharmaceuticals.
- chemical , chemistry : Erbium, Isotopes, Thulium.
- chemical , radiation effects : Erbium, Isotopes, Radiopharmaceuticals, Thulium.
- Computer Simulation, Models, Chemical, Photons, Radioisotopes.
Abstract
(167)Tm (T(1/2)=9.25d) is a candidate radioisotope for medical therapy and diagnostics due to its Auger-electron and low-energy X- and gamma-ray emission. Excitation functions of the (167)Er(p,n)(167)Tm reaction and (168)Er(p,n)(168)Tm, (167)Er(p,2n)(166)Tm, (166)Er(p,2n)(165)Tm disturbing reactions were measured up to 15MeV by using the stacked foil irradiation technique and gamma-ray spectroscopy. The measured excitation functions agree well with the results of ALICE-IPPE, EMPIRE-II and TALYS nuclear reaction model codes. The thick target yield of (167)Tm in the 15-8MeV energy range is 6.9MBq/microAh. A short comparison of charged particle production routes of (167)Tm is given.
DOI: 10.1016/j.apradiso.2009.10.043
PubMed: 19932028
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">(167)Tm (T(1/2)=9.25d) is a candidate radioisotope for medical therapy and diagnostics due to its Auger-electron and low-energy X- and gamma-ray emission. Excitation functions of the (167)Er(p,n)(167)Tm reaction and (168)Er(p,n)(168)Tm, (167)Er(p,2n)(166)Tm, (166)Er(p,2n)(165)Tm disturbing reactions were measured up to 15MeV by using the stacked foil irradiation technique and gamma-ray spectroscopy. The measured excitation functions agree well with the results of ALICE-IPPE, EMPIRE-II and TALYS nuclear reaction model codes. The thick target yield of (167)Tm in the 15-8MeV energy range is 6.9MBq/microAh. A short comparison of charged particle production routes of (167)Tm is given.</div>
</front>
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