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International Journal of Radiation Biology|June 25, 2002
Do low dose-rate bystander effects influence domestic radon risks?D J Brenner, R K SachsRadiation Research|October 1, 1994
Chromosomal "fingerprints" of prior exposure to densely ionizing radiationD J Brenner, R K SachsHealth Physics|July 11, 2003
Domestic radon risks may be dominated by bystander effects--but the risks are unlikely to be greater than we thoughtD J Brenner, R K SachsInternational Journal of Radiation Biology|December 1, 1993
Effect of LET on chromosomal aberration yields. I. Do long-lived, exchange-prone double strand breaks play a role?R K Sachs, D J BrennerInternational Journal of Radiation Biology|October 29, 1997
The link between low-LET dose-response relations and the underlying kinetics of damage production/repair/misrepairR K Sachs, P Hahnfeld, D J BrennerRadiation Protection Dosimetry|November 30, 2010
A new view of radiation-induced cancerI Shuryak, R K Sachs, D J BrennerMathematical Biosciences|December 1, 1996
Dose timing in tumor radiotherapy: considerations of cell number stochasticityR K Sachs, W F Heidenreich, D J BrennerRadiation Research|February 22, 2001
The bystander effect in radiation oncogenesis: II. A quantitative modelD J Brenner, J B Little, R K SachsBasic Life Sciences|January 1, 1994
Track structure, chromosome geometry and chromosome aberrationsD J Brenner, J F Ward, R K SachsInternational Journal of Radiation Biology|January 1, 1997
Review: proximity effects in the production of chromosome aberrations by ionizing radiationR K Sachs, A M Chen, D J BrennerPageof 35