Origin and evolution of the genetic code: the universal enigma EV Koonin, AS Novozhilov IUBMB Life 61 (2), 99-111, 2009 | 483 | 2009 |
Dynamical systems and models in biology AS Bratus, AS Novozhilov, AP Platonov Fizmatlit (in Russian), 2010 | 404* | 2010 |
Biological applications of the theory of birth-and-death processes AS Novozhilov, GP Karev, EV Koonin Briefings in bioinformatics 7 (1), 70-85, 2006 | 213 | 2006 |
Origin and evolution of the universal genetic code EV Koonin, AS Novozhilov Annual review of genetics 51 (1), 45-62, 2017 | 196 | 2017 |
Mathematical modeling of tumor therapy with oncolytic viruses: Regimes with complete tumor elimination within the framework of deterministic models AS Novozhilov, FS Berezovskaya, EV Koonin, GP Karev Biology Direct 1 (6), 1-18, 2006 | 136 | 2006 |
Evolution of the genetic code: partial optimization of a random code for robustness to translation error in a rugged fitness landscape AS Novozhilov, YI Wolf, EV Koonin Biology direct 2 (24), 1-24, 2007 | 127 | 2007 |
Mathematical modeling of evolution of horizontally transferred genes AS Novozhilov, GP Karev, EV Koonin Molecular biology and evolution 22 (8), 1721-1732, 2005 | 100 | 2005 |
On the spread of epidemics in a closed heterogeneous population AS Novozhilov Mathematical biosciences 215 (2), 177-185, 2008 | 92 | 2008 |
Mathematical modeling of tumor therapy with oncolytic viruses: effects of parametric heterogeneity on cell dynamics GP Karev, AS Novozhilov, EV Koonin Biology direct 1 (30), 19, 2006 | 83 | 2006 |
Population models with singular equilibrium FS Berezovskaya, AS Novozhilov, GP Karev Mathematical biosciences 208 (1), 270-299, 2007 | 57 | 2007 |
Exceptional error minimization in putative primordial genetic codes AS Novozhilov, EV Koonin Biology direct 4 (1), 44, 2009 | 45 | 2009 |
Epidemiological models with parametric heterogeneity: Deterministic theory for closed populations AS Novozhilov Mathematical Modelling of Natural Phenomena 7 (3), 147-167, 2012 | 36 | 2012 |
2 1 National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, Maryland 20894, USA; email:[email protected] 2 … AS Novozhilov USA Annual Review of Genetics 51, 45-62, 0 | 29 | |
Linear algebra of the permutation invariant Crow–Kimura model of prebiotic evolution AS Bratus, AS Novozhilov, YS Semenov Mathematical biosciences 256, 42-57, 2014 | 25 | 2014 |
A note on the replicator equation with explicit space and global regulation AS Bratus, VP Posvyanskii, AS Novozhilov Mathematical Biosciences and Engineering 8 (3), 659-676, 2011 | 23 | 2011 |
Families of traveling impulses and fronts in some models with cross-diffusion FS Berezovskaya, AS Novozhilov, GP Karev Nonlinear Analysis: Real World Applications 9 (5), 1866-1881, 2008 | 23 | 2008 |
Mathematical models for pollution-environment interaction A Bratus, A Meshcherin, A Novozhilov Vestnik MGU, Vychislitelnaya matematica i kybernetica. 2001, 1:23-28, 23-28, 2001 | 23* | 2001 |
On the asymptotic behaviour of the solutions to the replicator equation GP Karev, AS Novozhilov, FS Berezovskaya Mathematical Medicine and Biology 28 (2), 89, 2011 | 21 | 2011 |
Adaptive fitness landscape for replicator systems: to maximize or not to maximize AS Bratus, YS Semenov, AS Novozhilov Mathematical Modelling of Natural Phenomena 13 (3), 25, 2018 | 18 | 2018 |
On the reaction–diffusion replicator systems: spatial patterns and asymptotic behaviour AS Novozhilov, VP Posvyanskii, AS Bratus Russian Journal of Numerical Analysis and Mathematical Modelling 26 (6), 555-564, 2012 | 18 | 2012 |