Track structure analysis illustrating the prominent role of low-energy electrons in radiobiological effects of low-LET radiations
- 1 February 1991
- journal article
- Published by IOP Publishing in Physics in Medicine & Biology
- Vol. 36 (2) , 229-238
- https://doi.org/10.1088/0031-9155/36/2/007
Abstract
Monte Carlo track structure methods have been used to illustrate the importance of low-energy electrons produced by low-LET radiations. It is shown that these low-energy secondary electrons contribute substantially to the dose in all low-LET irradiations and are particularly efficient at producing highly localized clusters of atomic damage which may be responsible for a major part of the biological effectiveness of low-LET radiations. The data generated by Monte Carlo track structure techniques and by earlier semi-analytical methods based on the LET concept have been compared in terms of cumulative and differential fractions of total dose absorbed as a function of electron energy. The data show that low-energy secondary electrons account for up to nearly 50% of the total dose imparted to a medium when irradiated with electrons or photons.Keywords
This publication has 15 references indexed in Scilit:
- Current Status of Ultrasoft X Rays and Track Structure Analysis as Tools for Testing and Developing Biophysical Models of Radiation ActionRadiation Protection Dosimetry, 1990
- Breakage of Human Interphase Chromosomes by Alpha Particles and X-raysInternational Journal of Radiation Biology, 1989
- The Initial Physical Damage Produced by Ionizing RadiationsInternational Journal of Radiation Biology, 1989
- Calculation of Initial Yields of Single- and Double-strand Breaks in Cell Nuclei from Electrons, Protons and Alpha ParticlesInternational Journal of Radiation Biology, 1989
- The Deposition of Energy in Small Cylindrical Targets by High LET RadiationsRadiation Protection Dosimetry, 1985
- Platzman's Analysis of the Delivery of Radiation Energy to MoleculesRadiation Research, 1975
- Some Physical Aspects of Relative Biological EfficiencyThe British Journal of Radiology, 1957
- Calculations of Energy Dissipation Characteristics in Water for Various RadiationsRadiation Research, 1957
- Electron Energies and Ion Densities in Water Irradiated with 200 keV, 1 MeV and 25 MeV RadiationThe British Journal of Radiology, 1952
- Zur Theorie des Durchgangs schneller Korpuskularstrahlen durch MaterieAnnalen der Physik, 1930