A Fast Monte Carlo Algorithm to Simulate the Spectrum of DNA Damages Formed by Ionizing Radiation
暂无分享,去创建一个
[1] M. Weinfeld,et al. Response of Base Excision Repair Enzymes to Complex DNA Lesions , 2001, Radiation research.
[2] D T Goodhead,et al. Initial events in the cellular effects of ionizing radiations: clustered damage in DNA. , 1994, International journal of radiation biology.
[3] M. Frankenberg-Schwager. Induction, repair and biological relevance of radiation-induced DNA lesions in eukaryotic cells , 1990, Radiation and environmental biophysics.
[4] Aloke Chatterjee,et al. Clusters of DNA Damage Induced by Ionizing Radiation: Formation of Short DNA Fragments. I. Theoretical Modeling , 1996 .
[5] P O'Neill,et al. Computational Approach for Determining the Spectrum of DNA Damage Induced by Ionizing Radiation , 2001, Radiation research.
[6] J. Ward,et al. Biochemistry of DNA lesions. , 1985, Radiation research. Supplement.
[7] K M Prise,et al. A review of dsb induction data for varying quality radiations. , 1998, International journal of radiation biology.
[8] D. Charlton. The range of high LET effects from 125I decays. , 1986, Radiation research.
[9] D J Brenner,et al. Constraints on energy deposition and target size of multiply damaged sites associated with DNA double-strand breaks. , 1992, International journal of radiation biology.
[10] P. Jeggo. The fidelity of repair of radiation damage. , 2002, Radiation protection dosimetry.
[11] D. Charlton,et al. A method of calculating initial DNA strand breakage following the decay of incorporated 125I. , 1988, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[12] P O'Neill,et al. Computational modelling of low-energy electron-induced DNA damage by early physical and chemical events. , 1997, International journal of radiation biology.
[13] J. Ward,et al. Biological Consequences of Non-Homogeneous Energy Deposition by Ionising Radiation , 1994 .
[14] K M Prise,et al. A Review of Studies of Ionizing Radiation-Induced Double-Strand Break Clustering , 2001, Radiation research.
[15] M. Lomax,et al. Chemical aspects of clustered DNA damage induction by ionising radiation. , 2002, Radiation protection dosimetry.
[16] B. Rydberg,et al. Clusters of DNA damage induced by ionizing radiation: formation of short DNA fragments. II. Experimental detection. , 1996, Radiation research.
[17] D. T. Goodhead,et al. Quantitative modelling of DNA damage using Monte Carlo track structure method , 1999, Radiation and environmental biophysics.
[18] J. Ward. Radiation mutagenesis: the initial DNA lesions responsible. , 1995, Radiation research.
[19] J. Ward,et al. DNA damage produced by ionizing radiation in mammalian cells: identities, mechanisms of formation, and reparability. , 1988, Progress in nucleic acid research and molecular biology.
[20] J. Ward,et al. Mammalian cells are not killed by DNA single-strand breaks caused by hydroxyl radicals from hydrogen peroxide. , 1985, Radiation research.
[21] M. Frankenberg-Schwager,et al. Effect of dose rate on the induction of DNA double-strand breaks in eucaryotic cells. , 1981, Radiation research.
[22] D. Goodhead,et al. Modelling of DNA damage induced by energetic electrons (100 eV to 100 keV). , 2002, Radiation protection dosimetry.
[23] K. Erixon,et al. Linear induction of DNA double-strand breakage with X-ray dose, as determined from DNA fragment size distribution. , 1995, Radiation research.