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Radiation Research|June 27, 2015
Defining the Biological Effectiveness of Components of High-LET Track StructureDeepa M Sridharan, Lori J Chappell, Mary K Whalen, et al.Advances in Space Research : the Official Journal of the Committee on Space Research (COSPAR)|October 20, 2001
G2-chromosome aberrations induced by high-LET radiationsT Kawata, M Durante, Y Furusawa, et al.Radiation Measurements|November 1, 1996
Effects of target fragmentation on evaluation of LET spectra from space radiations: implications for space radiation protection studiesF A Cucinotta, J W Wilson, J L Shinn, et al.Radiation Research|October 18, 2001
Space radiation and cataracts in astronautsF A Cucinotta, F K Manuel, J Jones, et al.Journal of Radiation Research|February 4, 2012
Heavy ions can enhance TGFβ mediated epithelial to mesenchymal transitionMinli Wang, Megumi Hada, Janice Huff, et al.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)|January 5, 2002
Monte Carlo track structure for radiation biology and space applicationsH Nikjoo, S Uehara, I G Khvostunov, et al.Journal of the Optical Society of America. A, Optics, Image Science, and Vision|September 2, 2005
Single-mode regime of square-lattice photonic crystal fibersF Poli, M Foroni, M Bottacini, et al.Optics Express|May 14, 2015
Analysis of mid-infrared lasing in active random mediaC Molardi, X Yu, H K Liang, et al.Radiation Research|December 8, 2006
A robust procedure for removing background damage in assays of radiation-induced DNA fragment distributionsArtem L Ponomarev, Mauro Belli, Philip J Hahnfeldt, et al.Radiation Research|December 7, 2010
Analysis of flow cytometry DNA damage response protein activation kinetics after exposure to x rays and high-energy iron nucleiLori J Chappell, Mary K Whalen, Sheena Gurai, et al.Pageof 31