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Original Article

Track Structure Analysis of Ultrasoft X-rays Compared to High- and Low-LET Radiations

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Pages 513-529 | Received 15 Sep 1988, Accepted 03 Jan 1989, Published online: 03 Jul 2009

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J. FulfordP. BonnerD. T. GoodheadM. A. Hill O'Neill. (1999) Experimental Determination of the Dependence of OH Radical Yield on Photon Energy:  A Comparison with Theoretical Simulations. The Journal of Physical Chemistry A 103:51, pages 11345-11349.
Crossref
M Biaggi, F Ballarini, W Burkard, E Egger, A Ferrari & A Ottolenghi. (1999) Physical and biophysical characteristics of a fully modulated 72 MeV therapeutic proton beam: model predictions and experimental data. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 159:1-2, pages 89-100.
Crossref
Charlotte E. BoltonNicholas J. B. Green. (1999) Spin Effects on Spur Kinetics. 5. Modeling of Coherent Phenomena. The Journal of Physical Chemistry A 103:23, pages 4446-4456.
Crossref
Maurice Tubiana. (1999) Contribution of human data to the analysis of human carcinogenesis. Comptes Rendus de l'Académie des Sciences - Series III - Sciences de la Vie 322:2-3, pages 215-224.
Crossref
C Champion, A L'Hoir, M.F Politis, A Chetioui, B Fayard & A Touati. (1998) Monte-Carlo simulation of ion track structure in water: ionization clusters and biological effectiveness. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 146:1-4, pages 533-540.
Crossref
Isabelle Testard & Laure Sabatier. (1998) Is delayed genomic instability specifically induced by high-LET particles?. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 146:1-4, pages 518-527.
Crossref
Stanley W. Botchway, Subrata Chakrabarti & G. Mike Makrigiorgos. (1998) Novel Visible and Ultraviolet Light Photogeneration of Hydroxyl Radicals by 2-Methyl-4-nitro-quinoline-N-oxide (MNO) and 4, 4'-Dinitro-(2, 2') bipyridinyl-N, N'-dioxide (DBD). Photochemistry and Photobiology 67:6, pages 635-640.
Crossref
Stanley W. Botchway, Subrata Chakrabarti & G. Mike Makrigiorgos. (2008) Novel Visible and Ultraviolet Light Photogeneration of Hydroxyl Radicals by 2‐Methyl‐4‐nitro‐quinoline‐ N ‐oxide (MNO) and 4, 4′‐Dinitro‐(2, 2′) bipyridinyl‐N, N′‐dioxide (DBD) . Photochemistry and Photobiology 67:6, pages 635-640.
Crossref
M A Hill, M D Vecchia, K M S Townsend & D T Goodhead. (1998) Production and dosimetry of copper L ultrasoft x-rays for biological and biochemical investigations. Physics in Medicine and Biology 43:2, pages 351-363.
Crossref
Edward L. Alpen. 1998. Radiation Biophysics. Radiation Biophysics 132 168 .
Michael N. Cornforth. 1998. DNA Damage and Repair. DNA Damage and Repair 559 585 .
M P Little & C R Muirhead. (1997) Curvilinearity in the dose-response curve for cancer in Japanese atomic bomb survivors.. Environmental Health Perspectives 105:suppl 6, pages 1505-1509.
Crossref
A. Touati, M.A. Hervédu Penhoat, I. Bailly-Despiney, F. Gobert, C. Champion, B. Fayard, F. Abel, A. L'Hoir, J. Moulin, L. Sabatier & A. Chetioui. (1997) Biological implication of atomic collisions at the molecular level. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 132:2, pages 276-279.
Crossref
Simon M. Pimblott & Jay A. LaVerne. (1997) Stochastic Simulation of the Electron Radiolysis of Water and Aqueous Solutions. The Journal of Physical Chemistry A 101:33, pages 5828-5838.
Crossref
G Gordon Steel. (1996) From targets to genes: a brief history of radiosensitivity. Physics in Medicine and Biology 41:2, pages 205-222.
Crossref
G. Taucher-Scholz, J. Heilmann & G. Kraft. (1996) Induction of DNA strand breaks by heavy ions. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 107:1-4, pages 318-322.
Crossref
Simon M. Pimblott, Jay A. LaVerne & Asokendu Mozumder. (1996) Monte Carlo Simulation of Range and Energy Deposition by Electrons in Gaseous and Liquid Water. The Journal of Physical Chemistry 100:20, pages 8595-8606.
Crossref
D. T. Goodhead. (1995) Molecular and cell models of biological effects of heavy ion radiation. Radiation and Environmental Biophysics 34:2, pages 67-72.
Crossref
Simon M. Pimblott & Nicholas J.B. Green. 1995. Research in Chemical Kinetics. Research in Chemical Kinetics 117 174 .
A. Chetioui, L. Guiraud, I. Despiney & L. Sabatier. 1995. Physics with Multiply Charged Ions. Physics with Multiply Charged Ions 357 363 .
Jeffrey L. Schwartz. 1996. Chemical Induction of Cancer. Chemical Induction of Cancer 473 508 .
Ronald V. Dorn. (1994) Boron neutron capture therapy (BNCT): A radiation oncology perspective. International Journal of Radiation Oncology*Biology*Physics 28:5, pages 1189-1201.
Crossref
Hooshang Nikjoo & Shuzo Uehara. 1994. Computational Approaches in Molecular Radiation Biology. Computational Approaches in Molecular Radiation Biology 167 185 .
S Uehara, H Nikjoo & D T Goodhead. (1993) Cross-sections for water vapour for the Monte Carlo electron track structure code from 10 eV to the MeV region. Physics in Medicine and Biology 38:12, pages 1841-1858.
Crossref
M.N. Cornforth & J.S. Bedford. 1993. Advances in Radiation Biology - DNA and Chromatin Damage Caused by Radiation. Advances in Radiation Biology - DNA and Chromatin Damage Caused by Radiation 423 496 .
Aloke Chatterjee & William R. Holley. 1993. Advances in Radiation Biology - DNA and Chromatin Damage Caused by Radiation. Advances in Radiation Biology - DNA and Chromatin Damage Caused by Radiation 181 226 .
D.E. Charlton, H. Nikjoo & D.T. Goodhead. 1992. Congress Proceedings. Congress Proceedings 421 426 .
Dudley T. Goodhead. 1992. Effects of Low Dose and Low Dose Rate Radiation. Effects of Low Dose and Low Dose Rate Radiation 7 44 .
Aloke Chatterjee & William R. Holley. (1992) Biochemical mechanisms and clusters of damage for high-let radiation. Advances in Space Research 12:2-3, pages 33-43.
Crossref
M. Folkard. 1992. X-Ray Microscopy III. X-Ray Microscopy III 306 312 .
G. W. Barendsen. (1991) Biophysical factors influencing radiation carcinogenesis in cultured cells and animals. Radiation and Environmental Biophysics 30:3, pages 165-168.
Crossref
G Gordon Steel. (1991) The ESTRO Breur lecture cellular sensitivity to low dose-rate irradiation focuses the problem of tumour radioresistance. Radiotherapy and Oncology 20:2, pages 71-83.
Crossref
H. H. Evans. 1991. Advances in Mutagenesis Research. Advances in Mutagenesis Research 28 52 .
Barry D. Michael, Kevin M. Prise, Robert C. Fahey & Melvyn Folkard. 1991. The Early Effects of Radiation on DNA. The Early Effects of Radiation on DNA 333 346 .
Dudley T. Goodhead. 1991. The Early Effects of Radiation on DNA. The Early Effects of Radiation on DNA 271 286 .
W. R. Holley & A. Chatterjee. 1991. The Early Effects of Radiation on DNA. The Early Effects of Radiation on DNA 195 209 .
John F. Ward. 1992. Physical and Chemical Mechanisms in Molecular Radiation Biology. Physical and Chemical Mechanisms in Molecular Radiation Biology 403 421 .
S. Powell & T.J. McMillan. (1990) DNA damage and repair following treatment with ionizing radiation. Radiotherapy and Oncology 19:2, pages 95-108.
Crossref
. (1997) Cryo-protection of protein crystals against radiation damage in electron and X-ray diffraction. Proceedings of the Royal Society of London. Series B: Biological Sciences 241:1300, pages 6-8.
Crossref
J.T. Lett. 1990. 305 352 .
Edward A. Bump & J.Martin Brown. (1990) Role of glutathione in the radiation response of mammalian cells invitro and in vivo. Pharmacology & Therapeutics 47:1, pages 117-136.
Crossref
Dudley T. Goodhead. (1989) Relationships of radiation track structure to biological effect: A re-interpretation of the parameters of the Katz model. International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks and Radiation Measurements 16:2-3, pages 177-184.
Crossref

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