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  3. Cross-section measurement for an optimized 61Cu production at an 18 MeV medical cyclotron from natural Zn and enriched 64Zn solid targets.
 

Cross-section measurement for an optimized 61Cu production at an 18 MeV medical cyclotron from natural Zn and enriched 64Zn solid targets.

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BORIS DOI
10.48350/173384
Publisher DOI
10.1016/j.apradiso.2022.110466
PubMed ID
36174333
Description
The availability of novel medical radionuclides is a key point in the development of personalised nuclear medicine. In particular, copper radioisotopes are attracting considerable interest as they can be used to label various molecules of medical interest, such as proteins and peptides, and offer two of the most promising true theranostic pairs, namely 61Cu/67Cu and 64Cu/67Cu. Although 64Cu (t1/2 = 12.7006 h, β+: 17.6%, β-: 38.5%) is nowadays the most commonly used as a diagnostic radionuclide, 61Cu (t1/2 = 3.339 h, β+: 61%) features more favourable nuclear properties, such as a higher positron decay fraction and the absence of β- emissions. To date, the production of 61Cu has been carried out irradiating highly enriched 61Ni targets with a low energy proton beam. However, the use of the very expensive 61Ni targets requires an efficient recovery of the target material and makes this method quite inconvenient. Another promising production route is the proton irradiation of natural Zn or enriched 64Zn targets, exploiting the (p,α) nuclear reaction. Along this line, a research program is ongoing at the Bern medical cyclotron, equipped with an external beam transfer line and a solid target station. In this paper, we report on cross-section measurements of the 64Zn(p,α)61Cu nuclear reaction using natural Zn and enriched 64Zn material, which served as the basis to perform optimized 61Cu production tests with solid targets.
Date of Publication
2022-12
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Keyword(s)
Copper-61 Cross sections Medical cyclotron PET imaging Proton irradiation Solid targets Theranostics
Language(s)
en
Contributor(s)
Dellepiane, Gaia
Physikalisches Institut, Laboratorium für Hochenergiephysik (LHEP)
Physikalisches Institut
Casolaro, Pierluigi
Physikalisches Institut, Laboratorium für Hochenergiephysik (LHEP)
Mateu, Isidre
Scampoli, Paolaorcid-logo
Physikalisches Institut, Laboratorium für Hochenergiephysik (LHEP)
Voeten, Naomi Maria
Physikalisches Institut, Laboratorium für Hochenergiephysik (LHEP)
Physikalisches Institut
Braccini, Saverio
Physikalisches Institut, Laboratorium für Hochenergiephysik (LHEP)
Albert Einstein Center for Fundamental Physics (AEC)
Additional Credits
Physikalisches Institut, Laboratorium für Hochenergiephysik (LHEP)
Series
Applied radiation and isotopes
Publisher
Elsevier
ISSN
1872-9800
Access(Rights)
open.access
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