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Original Article

The Initial Physical Damage Produced by Ionizing Radiations

Pages 623-634 | Published online: 03 Jul 2009

References

  • Aghamohammadi S.Z., Goodhead D.T., Savage J.R.K. Induction of sister chromatid exchanges (SCE) in G0 lymphocytes by plutonium-238 α-particles. International Journal of Radiation Biology 1988; 53: 909–915
  • Barendsen G.W. Impairment of the proliferative capacity of human cells in culture by α-particles with differing linear-energy transfer. International Journal of Radiation Biology 1964; 8: 453–466
  • Burch P.R.J. Calculations of energy deposition characteristics in water for various radiations. Radiation Research 1957; 6: 289–301
  • Chapman J.D., Gillespie C.J. Radiation-induced events and their time-scale in mammalian cells. Advances in Radiation Biology 1981; 9: 143–198
  • Charlton D.E. The range of high-LET effects from 125I decays. Radiation Research 1986; 107: 163–171
  • Charlton D.E., Nikjoo H., Humm J.L. Calculation of initial yields of single and double strand breaks in cell nuclei from electrons, protons and alpha particles. International Journal of Radiation Biology 1989; 56: 1–19
  • Goodhead D.T. An assessment of the role of microdosimetry in radiobiology. Radiation Research 1982; 91: 45–76
  • Goodhead D.T. Physical basis for biological effect. Nuclear and Atomic Data for Radiotherapy and Related Radiobiology. International Atomic Energy Agency, Vienna 1987a; 37–53, In
  • Goodhead D.T. Biophysical models of radiation action; introductory review. Radiation Research, Proceedings of the Eighth International Congress in Radiation Research, E.M. Fielden, J.F. Fowler, J.H. Hendry, D. Scott. Taylor & Francis, London 1987b; 2: 306–311
  • Goodhead D.T. Relationship of microdosimetric techniques to applications in biological systems. The Dosimetry of Ionising Radiations, K.R. Kase, B.E. Bjarngaard, F.H. Attix. Academic Press, Orlando 1987c; II: 1–89
  • Goodhead D.T. Spatial and temporal distribution of energy. Health Physics 1988; 55: 231–240
  • Goodhead D.T., Nikjoo H. Track structure analysis of ultrasoft X-rays compared to high- and low-LET radiations. International Journal of Radiation Biology 1989; 55: 513–529
  • Goodhead D.T., Munson R.J., Thacker J., Cox R. Mutation and inactivation of cultured mammalian cells exposed to beams of accelerated heavy ions. IV. Biophysical interpretation. International Journal of Radiation Biology 1980; 37: 135–167
  • Goodhead D.T., Charlton D.E., Wilson W.E., Paretzke H.G. Current biophysical approaches to the understanding of biological effects of radiation in terms of local energy deposition. Radiation Protection, Proceedings Fifth Symposium on Neutron Dosimetry, H. Schraube, G. Burger, J. Booz. Report EUR 9762, Commission of the European Communities, Luxembourg 1985; 57–67
  • Howard-Flanders P. Physical and chemical mechanisms in the injury of cells by ionising radiation. Advances in Biological and Medical Physics 1958; 6: 553–603
  • Ito A. Calculation of double strand break probability of DNA for low-LET radiations based on track structure analysis. Nuclear and Atomic Data for Radiotherapy and Related Radiobiology. International Atomic Energy Agency, Vienna 1987; 413–429
  • Kraft G. Radiobiological effects of very heavy ions: inactivation, induction of chromosome aberrations and strand breaks. Nuclear Science Applications 1987; 3: 1–28
  • Lea D.E. The induction of chromosome structural changes by radiation: detailed quantitative interpretation. British Journal of Radiology Supplement 1 1947; 75–83
  • Nikjoo H., Goodhead D.T., Charlton D.E., Paretzke H.G. Energy deposition in small cylindrical targets by ultrasoft X-rays. Physics in Medicine and Biology 1989; 34: 691–705
  • Paretzke H.G. Radiation track structure theory. Kinetics of Nonhomogeneous Processes, G.R. Freeman. Wiley, New York 1987; 89–170
  • Roots R., Okada S. Estimation of life times and diffusion distances of radicals involved in X-ray-induced DNA strand breaks or killing of mammalian cells. Radiation Research 1975; 64: 306–320
  • Thacker J. The nature of mutants induced by ionizing radiation in cultured hamster cells. III. Molecular characterization of HPRT-deficient mutants induced by γ-rays or α-particles showing the majority have deletions of all or part of the hprt gene. Mutation Research 1986; 160: 267–275
  • Ward J.F. DNA damage produced by ionizing radiation in mammalian cells: identities, mechanisms of formation and repairability. Progress in Nucleic Acid Research and Molecular Biology 1988; 35: 95–125

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