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Monte Carlo predictions of DNA fragment-size distributions for large sizes after HZE particle irradiationDSBs (double-strand breaks) produced by densely ionizing space radiation are not located randomly in the genome: recent data indicate DSB clustering along chromosomes. DSB clustering at large scales, from >100 Mbp down to approximately 2 kbp, is modeled using a Monte-Carlo algorithm. A random-walk model of chromatin is combined with a track model, that predicts the radial distribution of energy from an ion, and the RLC (randomly-located-clusters) formalism, in software called DNAbreak. This model generalizes the random-breakage model, whose broken-stick fragment-size distribution is applicable to low-LET radiation. DSB induction due to track interaction with the DNA volume depends on the radiation quality parameter Q. This dose-independent parameter depends only weakly on LET. Multi-track, high-dose effects depend on the cluster intensity parameter lambda, proportional to fluence as defined by the RLC formalism. After lambda is determined by a numerical experiment, the model reduces to one adjustable parameter Q. The best numerical fits to the experimental data, determining Q, are obtained. The knowledge of lambda and Q allows us to give biophysically based extrapolations of high-dose DNA fragment-size data to low doses or to high LETs.
Document ID
20040088553
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Ponomarev, A. L.
(NASA Johnson Space Center Houston TX United States)
Cucinotta, F. A.
Sachs, R. K.
Brenner, D. J.
Date Acquired
August 21, 2013
Publication Date
January 1, 2001
Publication Information
Publication: Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB)
Volume: 17 Suppl 1
ISSN: 1120-1797
Subject Category
Life Sciences (General)
Funding Number(s)
CONTRACT_GRANT: GM 57245
CONTRACT_GRANT: ES-07361
CONTRACT_GRANT: CA-49062
CONTRACT_GRANT: CA-24232
CONTRACT_GRANT: CA-77285
CONTRACT_GRANT: FG02-98ER62686
CONTRACT_GRANT: RR-11623
Distribution Limits
Public
Copyright
Other
Keywords
NASA Center JSC
NASA Discipline Radiation Health

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