Citation: H. Schollnberger et al., A biomathematical modeling approach to explain the phenomenon of radiationhormesis, HUM ECOL R, 7(4), 2001, pp. 867-890
Authors:
Schollnberger, H
Mebust, MR
Crawford-Brown, DJ
Eckl, PM
Hofmann, W
Citation: H. Schollnberger et al., Significance of cell-cycle delay, multiple initiation pathways, misrepair and replication errors in a model of radiobiological effects, INT J RAD B, 77(4), 2001, pp. 519-527
Citation: H. Schollnberger et al., Application of Bayesian inference to characterize risks associated with low doses of low-LET radiation, B MATH BIOL, 63(5), 2001, pp. 865-883
Authors:
Schollnberger, H
Kotecki, M
Crawford-Brown, D
Hofmann, W
Eckl, P
Citation: H. Schollnberger et al., Adaptive response and dose-response plateaus for initiation in a state-vector model of carcinogenesis, INT J RAD B, 75(3), 1999, pp. 351-364
Authors:
Fleck, CM
Schollnberger, H
Kottbauer, MM
Dockal, T
Prufert, U
Citation: Cm. Fleck et al., Modeling radioprotective mechanisms in the dose effect relation at low doses and low dose rates of ionizing radiation, MATH BIOSCI, 155(1), 1999, pp. 13-44