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W F HEIDENREICH

Showing results (11-20 of 36) with videos related to

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Radiation Research|April 25, 2003
A biologically based model for liver cancer risk in the Swedish thorotrast patientsW F Heidenreich, Ullakarin Nyberg, P Hall
Radiation 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 Paretzke
Radiation Research|May 16, 2001
Radiation-induced cell inactivation can increase the cancer riskW F Heidenreich, M Atkinson, H G Paretzke
Radiation and Environmental Biophysics|September 28, 2005
Interaction of smoking and radon in rats: a biologically based mechanistic modelW F Heidenreich, J P Morlier, G Monchaux
Radiation and Environmental Biophysics|December 24, 1997
No evidence for increased tumor rates below 200 mSv in the atomic bomb survivors dataW F Heidenreich, H G Paretzke, P Jacob
Mathematical Biosciences|December 1, 1996
Dose timing in tumor radiotherapy: considerations of cell number stochasticityR K Sachs, W F Heidenreich, D J Brenner
Radiation Research|October 28, 2006
Lung cancer risk in mice: analysis of fractionation effects and neutron RBE with a biologically motivated modelW F Heidenreich, B A Carnes, H G Paretzke
Radiation Research|April 9, 2013
A mechanistic model for medulloblastoma induction in miceW F Heidenreich, A Saran, M Atkinson, et al.
Risk Analysis : an Official Publication of the Society for Risk Analysis|June 1, 1997
Some properties of the hazard function of the two-mutation clonal expansion modelW F Heidenreich, E G Luebeck, S H Moolgavkar
Statistics in Medicine|October 9, 2002
Mechanistic modelling in large case-control studies of lung cancer risk from smokingW F Heidenreich, J Wellmann, P Jacob, et al.
Pageof 4

Showing results (11-20 of 36) with videos related to

Sort By:
Pageof 4
Radiation Research|April 25, 2003
A biologically based model for liver cancer risk in the Swedish thorotrast patientsW F Heidenreich, Ullakarin Nyberg, P Hall
Radiation 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 Paretzke
Radiation Research|May 16, 2001
Radiation-induced cell inactivation can increase the cancer riskW F Heidenreich, M Atkinson, H G Paretzke
Radiation and Environmental Biophysics|September 28, 2005
Interaction of smoking and radon in rats: a biologically based mechanistic modelW F Heidenreich, J P Morlier, G Monchaux
Radiation and Environmental Biophysics|December 24, 1997
No evidence for increased tumor rates below 200 mSv in the atomic bomb survivors dataW F Heidenreich, H G Paretzke, P Jacob
Mathematical Biosciences|December 1, 1996
Dose timing in tumor radiotherapy: considerations of cell number stochasticityR K Sachs, W F Heidenreich, D J Brenner
Radiation Research|October 28, 2006
Lung cancer risk in mice: analysis of fractionation effects and neutron RBE with a biologically motivated modelW F Heidenreich, B A Carnes, H G Paretzke
Radiation Research|April 9, 2013
A mechanistic model for medulloblastoma induction in miceW F Heidenreich, A Saran, M Atkinson, et al.
Risk Analysis : an Official Publication of the Society for Risk Analysis|June 1, 1997
Some properties of the hazard function of the two-mutation clonal expansion modelW F Heidenreich, E G Luebeck, S H Moolgavkar
Statistics in Medicine|October 9, 2002
Mechanistic modelling in large case-control studies of lung cancer risk from smokingW F Heidenreich, J Wellmann, P Jacob, et al.
Pageof 4