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Track Structure and the Biological Effectiveness of Accelerated Particles for the Induction of Chromosome DamageTrack structure models predict that at a fixed value of LET, particles with lower charge number, Z will have a higher biological effectiveness compared to particles with a higher Z. In this report we investigated how track structure effects induction of chromosomal aberration in human cells. Human lymphocytes were irradiated in vitro with various energies of accelerated iron, silicon, neon, or titanium ions and chromosome damage was assessed in using three color FISH chromosome painting in chemically induced PCC samples collected a first cell division post irradiation. The LET values for these ions ranged from 30 to195 keV/micron. Of the particles studied, Neon ions have the highest biological effectiveness for induction of total chromosome damage, which is consistent with track structure model predictions. For complex-type exchanges 64 MeV/ u Neon and 450 MeV/u Iron were equally effective and induced the most complex damage. In addition we present data on chromosomes exchanges induced by six different energies of protons (5 MeV/u to 2.5 GeV/u). The linear dose response term was similar for all energies of protons suggesting that the effect of the higher LET at low proton energies is balanced by the production of nuclear secondaries from the high energy protons.
Document ID
20110023285
Acquisition Source
Johnson Space Center
Document Type
Abstract
Authors
George, K.
(Wyle Integrated Science and Engineering Group Houston, TX, United States)
Hada, M.
(Universities Space Research Association Houston, TX, United States)
Chappell, L.
(Universities Space Research Association Houston, TX, United States)
Cucinotta, F. A.
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
August 25, 2013
Publication Date
January 1, 2011
Subject Category
Aerospace Medicine
Report/Patent Number
JSC-CN-25314
Report Number: JSC-CN-25314
Meeting Information
Meeting: 2012 NASA Human Research Program Investigators'' Workshop
Location: Houston, TX
Country: United States
Start Date: February 14, 2012
End Date: February 16, 2012
Sponsors: NASA Johnson Space Center
Distribution Limits
Public
Copyright
Public Use Permitted.
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