Mathematical approaches for emerging and reemerging infectious diseases: models, methods, and theory C Castillo-Chavez, S Blower, P van den Driessche, D Kirschner, ... Springer Science & Business Media, 2002 | 408 | 2002 |
Mutual exclusion versus coexistence for discrete competitive systems JE Franke, AA Yakubu Journal of Mathematical Biology 30, 161-168, 1991 | 149 | 1991 |
Discrete-time SIS models with complex dynamics C Castillo-Chavez, AA Yakubu Nonlinear Analysis, Theory, Methods and Applications 47 (7), 4753-4762, 2001 | 148 | 2001 |
Dispersal, disease and life-history evolution C Castillo-Chavez, AA Yakubu Mathematical Biosciences 173 (1), 35-53, 2001 | 123 | 2001 |
Computational sustainability: Computing for a better world and a sustainable future C Gomes, T Dietterich, C Barrett, J Conrad, B Dilkina, S Ermon, F Fang, ... Communications of the ACM 62 (9), 56-65, 2019 | 116 | 2019 |
Mathematical models of isolation and quarantine C Castillo-Chavez, CW Castillo-Garsow, AA Yakubu Jama 290 (21), 2876-2877, 2003 | 91 | 2003 |
Geometry of exclusion principles in discrete systems JE Franke, AA Yakubu Journal of Mathematical Analysis and Applications 168 (2), 385-400, 1992 | 85 | 1992 |
Global stability of cycles: Lotka-Volterra competition model with stocking S Elaydi, AA Yakubu The Journal of Difference Equations and Applications 8 (6), 537-549, 2002 | 68 | 2002 |
Discrete-time SIS epidemicmodel in a seasonal environment AA Yakubu, JE Franke SIAM Journal on Applied Mathematics 66 (5), 1563-1587, 2006 | 66 | 2006 |
Population models in almost periodic environments T Diagana, S Elaydi, AA Yakubu Journal of Difference Equations and Applications 13 (4), 239-260, 2007 | 61 | 2007 |
Anthrax epizootic and migration: Persistence or extinction A Friedman, AA Yakubu Mathematical Biosciences 241 (1), 137-144, 2013 | 60 | 2013 |
Disease-induced mortality in density-dependent discrete-time SIS epidemic models JE Franke, AA Yakubu Journal of mathematical biology 57, 755-790, 2008 | 56 | 2008 |
Interplay between local dynamics and dispersal in discrete-time metapopulation models AA Yakubu, C Castillo-Chavez Journal of theoretical biology 218 (3), 273-288, 2002 | 54 | 2002 |
Allee effects in a discrete-time SIS epidemic model with infected newborns AA Yakubu Journal of Difference Equations and Applications 13 (4), 341-356, 2007 | 53 | 2007 |
A mathematical model of anthrax transmission in animal populations CM Saad-Roy, P Van den Driessche, AA Yakubu Bulletin of mathematical biology 79 (2), 303-324, 2017 | 51 | 2017 |
Global attractors in competitive systems JE Franke, AA Yakubu Nonlinear Analysis: Theory, Methods & Applications 16 (2), 111-129, 1991 | 50 | 1991 |
Intraspecific competition, dispersal and disease dynamics in discrete-time patchy environments C Castillo-Chavez, AA Yakubu IMA VOLUMES IN MATHEMATICS AND ITS APPLICATIONS 125, 165-182, 2002 | 49 | 2002 |
Weak Allee effects and species coexistence Y Kang, AA Yakubu Nonlinear Analysis: Real World Applications 12 (6), 3329-3345, 2011 | 44 | 2011 |
Modelling Wolbachia infection in a sex-structured mosquito population carrying West Nile virus JZ Farkas, SA Gourley, R Liu, AA Yakubu Journal of mathematical biology 75, 621-647, 2017 | 41 | 2017 |
Discrete-time SIS models with simple and complex population dynamics C Castillo-Chavez, AA Yakubu IMA VOLUMES IN MATHEMATICS AND ITS APPLICATIONS 125, 153-164, 2002 | 37 | 2002 |