Zobrazeno 1 - 10
of 63
pro vyhledávání: '"Ingo, Spahn"'
Autor:
Mazhar Hussain, Lucas Mues Genannt Koers, Ingo Spahn, Stefan Spellerberg, Bernd Neumaier, Syed M. Qaim
Publikováno v:
Scientific Reports, Vol 14, Iss 1, Pp 1-12 (2024)
Abstract Nuclear reaction cross sections for the formation of 72As and 71As in proton-induced reactions on enriched 72Ge targets were measured up to 45 MeV utilizing three different cyclotrons at the Forschungszentrum Jülich. The stacked-thin sample
Externí odkaz:
https://doaj.org/article/54dd3ad716af4e8cb7b86c63f3e0a2c8
Publikováno v:
Frontiers in Chemistry, Vol 11 (2023)
Copper has several clinically relevant radioisotopes and versatile coordination chemistry, allowing attachment of its radionuclides to biological molecules. This characteristic makes it suitable for applications in molecular imaging or radionuclide t
Externí odkaz:
https://doaj.org/article/baf0a6955f17434287f26d39204e3dc1
Autor:
Charlotte Duchemin, Thomas E. Cocolios, Kristof Dockx, Gregory J. Farooq-Smith, Olaf Felden, Roberto Formento-Cavaier, Ralf Gebel, Ulli Köster, Bernd Neumaier, Bernhard Scholten, Ingo Spahn, Stefan Spellerberg, Maria E. Stamati, Simon Stegemann, Hannelore Verhoeven
Publikováno v:
Frontiers in Medicine, Vol 8 (2021)
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.
Externí odkaz:
https://doaj.org/article/043d764e00734d57ad495398e66444e5
Publikováno v:
Frontiers in Physics, Vol 9 (2021)
Nuclear data are important for production and medical application of a radionuclide. This brief review concentrates on nuclear reaction cross-section data. The availability of standardized nuclear data for accelerator-based production of medical radi
Externí odkaz:
https://doaj.org/article/a890b9567e74462a9d8f1188eeaf763f
Autor:
M. Shuza Uddin, Syed M. Qaim, Bernhard Scholten, M. Shamsuzzoha Basunia, Lee A. Bernstein, Ingo Spahn, Bernd Neumaier
Publikováno v:
Molecules, Vol 27, Iss 3, p 768 (2022)
The β+-emitting radionuclide 86gY (t1/2 = 14.7 h) forms a matched-pair with the β−-emitting therapeutic radionuclide 90Y (t1/2 = 2.7 d) for theranostic application in medicine. This approach demands a precise knowledge of the positron emission pr
Externí odkaz:
https://doaj.org/article/a175e78a2b9e40e7b2135b7795b45f31
Autor:
M. Shuza Uddin, M. Shamsuzzoha Basunia, Ingo Spahn, Stefan Spellerberg, Rahat Khan, M. Mezbah Uddin, Lee A. Bernstein, Bernd Neumaier, Syed M. Qaim
Publikováno v:
Radiochimica acta 111(2), 81-90 (2023). doi:10.1515/ract-2022-0086
Radiochimica Acta, vol 111, iss 2
Radiochimica Acta, vol 111, iss 2
Cross sections of the 86Sr(p,3n)84mY, 86Sr(p,αn)82mRb, and 86Sr(p,x)85gSr reactions were measured from their respective thresholds up to 16.2 MeV and from 23.0 to 44.1 MeV at FZJ, and from 14.3 to 24.5 MeV at LBNL, using 96.4% enriched 86SrCO3 as ta
Publikováno v:
Radiochimica Acta. 110:707-724
Radiochemical separations used in large scale routine production of diagnostic and therapeutic radionuclides at a particle accelerator for patient care are briefly outlined. The role of chemistry at various stages of development of a production route
Publikováno v:
Der Nuklearmediziner 44(02), 120-126 (2021). doi:10.1055/a-1380-7815
ZusammenfassungRadionuklide für die Bildgebung sowie für die interne Radiotherapie werden in Kernreaktoren sowie an Zyklotronen erzeugt. In diesem Beitrag sollen verschiedene Optionen, Radionuklide an einem kleinen medizinischen Zyklotron (Ep ≤ 1
Publikováno v:
Nuclear Medicine and Biology. :S8-S9
Autor:
Jonathan T. Morrell, Haleema Zaneb, Ingo Spahn, Andrew S. Voyles, M. Shamsuzzhoha Basunia, Stefan Spellerberg, Jesus A. Rios, L. A. Bernstein, Sándor Sudár, M. Shuza Uddin, Bernd Neumaier, Syed M. Qaim, Bernhard Scholten
Publikováno v:
Radiochimica acta 108(9), 747-756 (2020). doi:10.1515/ract-2020-0021
Radiochimica Acta, vol 108, iss 9
Radiochimica Acta, vol 108, iss 9
In view of several significant discrepancies in the excitation function of the 86Sr(p,n)86g+xmY reaction which is the method of choice for the production of the non-standard positron emitter 86Y for theranostic application, we carried out a careful m