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Mathematical Biosciences|October 1, 1996
A discrete-time, multi-type generational inheritance branching process model of cell proliferationD N Stivers, M Kimmel, D E AxelrodBulletin of Mathematical Biology|March 1, 1994
Time-continuous branching walk models of unstable gene amplificationM Kimmel, D N StiversJournal of Theoretical Biology|November 21, 1991
Unequal cell division, growth regulation and colony size of mammalian cells: a mathematical model and analysis of experimental dataM Kimmel, D E AxelrodMutation Research|April 1, 1994
Fluctuation test for two-stage mutations: application to gene amplificationM Kimmel, D E AxelrodGenetics|July 1, 1990
Mathematical models of gene amplification with applications to cellular drug resistance and tumorigenicityM Kimmel, D E AxelrodGenetics|May 1, 1996
Dynamics of repeat polymorphisms under a forward-backward mutation model: within- and between-population variability at microsatellite lociM Kimmel, R Chakraborty, D N Stivers, et al.Journal of Theoretical Biology|September 23, 1997
Computer simulation of expansions of DNA triplet repeats in the fragile X syndrome and Huntington's diseaseO Bat, M Kimmel, D E AxelrodJournal of Theoretical Biology|May 21, 1994
Gene amplification by unequal sister chromatid exchange: probabilistic modeling and analysis of drug resistance dataD E Axelrod, K A Baggerly, M KimmelMutation Research|May 1, 1992
A branching process model of gene amplification following chromosome breakageM Kimmel, D E Axelrod, G M WahlProceedings of the National Academy of Sciences of the United States of America|February 4, 1997
Relative mutation rates at di-, tri-, and tetranucleotide microsatellite lociR Chakraborty, M Kimmel, D N Stivers, et al.Pageof 15