Biological effectiveness and post-radiation recovery of corneal epithelium cells of mice were studied. Mice were exposed to a broad range of doses from accelerated helium ions with the energy of 4 MeV/nucleon and 4 GeV/nucleon once and twice with a 24-hr. interval. LET values for these energies were 120 and 0.88 keV/microm, respectively. Gamma-source 137Cs (LET = 0.3 keV/microm) was used as a radiation standard. Animals irradiated by 25-400 sGy were sacrificed in 24 and 72 hrs. by way of cervical dislocation. Total corneal preparations made from enucleated eyeballs were analyzed for the mitotic index and aberrant mitoses using the anaphase method. High damaging properties of accelerated helium ions with the energy of 4 MeV/nucleon were manifested by a considerable reduction of the mitotic index and a more marked rise in the number of aberrant mitoses following the single and repeated exposure. Fractional irradiation by helium ions with the energy of 4 MeV/nucleon resulted in inhibition and even arrest of reparation suggesting additivity of separate radiation fractions. From the dose values that produced the double reduction of the mitotic index, coefficients of the relative biological effectiveness (RBE) for helium ions with the energy of 4 MeV/nucleon and 4 GeV/nucleon were estimated to be 5.3-8.6 and 1.3-1.8, respectively. In the context of the number of aberrant mitoses, RBE coefficients were significantly lower ranging 2.3-3.5 and 1.1-1.3 for these energies, respectively.
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Radiat Res
January 2025
Department of Radiation Oncology, Mayo Clinic, Rochester, Minnesota.
Variable relative biological effectiveness (RBE) of carbon radiotherapy may be calculated using several models, including the microdosimetric kinetic model (MKM), stochastic MKM (SMKM), repair-misrepair-fixation (RMF) model, and local effect model I (LEM), which have not been thoroughly compared. In this work, we compared how these four models handle carbon beam fragmentation, providing insight into where model differences arise. Monoenergetic and spread-out Bragg peak carbon beams incident on a water phantom were simulated using Monte Carlo.
View Article and Find Full Text PDFRep Prog Phys
January 2025
Department of Physics and Astronomy, Aarhus University, Ny Munkegade 120, Aarhus, Midtjylland, 8000, DENMARK.
Irradiation of condensed matter with ionizing radiation generally causes direct photoionization as well as secondary processes that often dominate the ionization dynamics. Here, large helium (He) nanodroplets with radius ≳ 40 nm doped with lithium (Li) atoms are irradiated with extreme ultraviolet (XUV) photons of energy hν ≥ 44.4 eV and indirect ionization of the Li dopants is observed in addition to direct photoionization of the He droplets.
View Article and Find Full Text PDFMutat Res Rev Mutat Res
January 2025
Radiation Epidemiology Branch, National Cancer Institute, MD 20892-9778, USA; Faculty of Health, Science and Technology, Oxford Brookes University, Headington Campus, OX3 0BP, UK.
Biological effects of ionizing radiation vary not merely with total dose but also with temporal dose distribution. Sparing dose protraction effects, in which dose protraction reduces effects of radiation have widely been accepted and generally assumed in radiation protection, particularly for stochastic effects (e.g.
View Article and Find Full Text PDFRep Prog Phys
January 2025
Department of Physics and Astronomy, Aarhus University, Ny Munkegade 120, Aarhus, Midtjylland, 8000, DENMARK.
Irradiation of condensed matter with ionizing radiation generally causes direct photoionization as well as secondary processes that often dominate the ionization dynamics. Here, large helium (He) nanodroplets with radius ≳ 40 nm doped with lithium (Li) atoms are irradiated with extreme ultraviolet (XUV) photons of energy hν ≥ 44.4 eV and indirect ionization of the Li dopants is observed in addition to direct photoionization of the He droplets.
View Article and Find Full Text PDFMaterials (Basel)
December 2024
Institute of Nuclear Physics, Almaty 050032, Kazakhstan.
In the original publication [...
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