Scientific Reports · 2019 · 27 citations · 23 references
The linear energy transfer (LET) spectrum, absorbed dose and dose equivalent from secondary particles of LET<sub>∞</sub>H<sub>2</sub>O ≥15 keV/μm deposited within the plateau of the Bragg curve in primary particle-induced nuclear target fragmentation reactions in tissue during proton and heavy ion radiotherapy were measured using CR-39 plastic nuclear track detectors and analyzed by means of atomic force microscopy. It was found that secondary target fragments contributed 20% to dose equivalent for primary protons (157 MeV), 13% for primary helium ions (145 MeV/n) and 4% for primary carbon ions (383 MeV/n), respectively. Little research has been done on the contribution from these particles to primary given dose. The smaller contribution measured for energetic carbon ion beams compared to proton beams can be considered an advantage of carbon ion radiotherapy over proton radiotherapy.
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Radiological Use of Fast Protons
Robert R. Wilson · Radiology · 1946 · 1.3K citations
R. L. Fleischer, P. B. Price, R. M. Walker · Scientific American · 1969 · 1.3K citations
Nuclear Reactions at High Energies
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