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Radiation Research|October 18, 2001
The two-stage clonal expansion model as an example of a biologically based model of radiation-induced cancerW F Heidenreich, H G ParetzkeRadiation Research|October 31, 2008
Promotion of initiated cells by radiation-induced cell inactivationW F Heidenreich, H G ParetzkeRadiation and Environmental Biophysics|June 1, 1997
DNA complex lesions induced by protons and alpha-particles: track structure characteristics determining linear energy transfer and particle type dependenceA Ottolenghi, M Merzagora, H G ParetzkeHealth Physics|July 1, 1988
Organ doses from radionuclides on the ground. Part II. Non-trivial time dependencesP Jacob, H G Paretzke, H RosenbaumHealth Physics|September 1, 1996
Long-term behavior of radiocesium in dairy herds in the years following the Chernobyl accidentG Voigt, F Rauch, H G ParetzkeRadiation and Environmental Biophysics|January 1, 1989
Weathering of 134/137Cs following leaf contamination of grass cultures in an outdoor experimentJ Ertel, G Voigt, H G ParetzkeRadiation Protection Dosimetry|June 5, 2007
Comparisons of 239Pu inhalation doses calculated with ICRP 67 and proposed systemic modelsW B Li, U Oeh, H G ParetzkeRadiation and Environmental Biophysics|February 1, 1997
Exact solutions of the clonal expansion model and their application to the incidence of solid tumors of atomic bomb survivorsW F Heidenreich, P Jacob, H G ParetzkeRadiation and Environmental Biophysics|December 5, 1998
Measurement of resuspended aerosol in the Chernobyl area. Part III. Size distribution and dry deposition velocity of radioactive particles during anthropogenic enhanced resuspensionE K Garger, H G Paretzke, J TschierschRadiation Research|May 16, 2001
Radiation-induced cell inactivation can increase the cancer riskW F Heidenreich, M Atkinson, H G ParetzkePageof 8