The stochastic microdosimetric kinetic (SMK) model is one of the most sophisticated and precise models used in the estimation of the relative biological effectiveness of carbon-ion radiotherapy (CRT) and boron neutron capture therapy (BNCT). However, because of its complicated and time-consuming calculation procedures, it is nearly impractical to ...
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Predicting DNA damage yields and assessing beam quality for protons and carbon ions using a DBSCAN algorithm. [PDF]
Chaibura S, Liamsuwan T.
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Extending the microdosimetry gamma model (MGM) to estimate induced DNA damage and its complexity at macroscopic scale by protons and helium ions. [PDF]
Onecha VV +3 more
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Variable Relative Biological Effectiveness of Protons in the Rat Spinal Cord: Measurements and Comparison With Model Calculations. [PDF]
Glowa C +11 more
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Recent Advances in Radiopharmaceuticals for Cancer Diagnosis and Therapy. [PDF]
Han YR, Lee SB.
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Accelerator Department. Annual progress report, 1 Januar - 31 December 1979 [PDF]
Risø National Laboratory, Roskilde
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Clinical White Paper From the "Hadrontherapy for Life" Symposium-Clinical Expansion of Carbon Ion Facilities Worldwide. [PDF]
Thariat J +10 more
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Clinical Image-Based Dosimetry of Actinium-225 in Targeted Alpha Therapy. [PDF]
Ramonaheng K +17 more
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Contemporary opportunities and potential of Auger electron-emitting theranostics. [PDF]
Lee SY, Manning HC.
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Evaluation of the uncertainty in calculating nanodosimetric quantities due to the use of different interaction cross sections in Monte Carlo track structure codes. [PDF]
Villagrasa C +13 more
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