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Results: 1 to 30 of 69 found      Go to page: 1 2 3

[1] L. J. S. Allen and E. J. Allen. Deterministic and Stochastic SIR Epidemic Models with Power Function Transmission and Recovery Rates. Contemporary Mathematics 618 (2014) 1-15.
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[2] Elamin H. Elbasha and Erik J. Dasbach. Evaluating the Cost-Effectiveness of Vaccination Programs. Contemporary Mathematics 618 (2014) 17-47.
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[3] Zhi-Cheng Wang, Jianhong Wu and Rongsong Liu. Traveling waves of the spread of avian influenza. Proc. Amer. Math. Soc. 140 (2012) 3931-3946.
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[4] Jerome K. Percus. Mathematical Methods in Immunology. Courant Lecture Notes 23 (2012) MR MR2894966.
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[5] Viewpoint of the virus. Courant Lecture Notes 23 (2012) 97-105.
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[6] Quantifying the immune response (assays). Courant Lecture Notes 23 (2012) 25-41.
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[7] The HIV pandemic. Courant Lecture Notes 23 (2012) 1-16.
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[8] Basic facts of immunology. Courant Lecture Notes 23 (2012) 17-24.
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[9] Modeling cell-mediated response. Courant Lecture Notes 23 (2012) 73-88.
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[10] Modeling humoral immune responses. Courant Lecture Notes 23 (2012) 43-72.
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[11] Control of immune response. Courant Lecture Notes 23 (2012) 89-96.
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[12] MATLAB\textregistered {} programs. Courant Lecture Notes 22 (2011) 133-142.
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[13] Microbial ecology. Courant Lecture Notes 22 (2011) 51-72.
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[14] Population dynamics. Courant Lecture Notes 22 (2011) 1-27.
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[15] Random processes. Courant Lecture Notes 22 (2011) 29-49.
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[16] Frank C. Hoppensteadt. Mathematical Methods for Analysis of a Complex Disease. Courant Lecture Notes 22 (2011) MR MR2839327.
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[17] Population genetics. Courant Lecture Notes 22 (2011) 95-112.
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[18] Propagation of epidemic diseases. Courant Lecture Notes 22 (2011) 73-93.
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[19] Stratifications of disease systems. Courant Lecture Notes 22 (2011) 113-131.
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[20] Fred Roberts. Greedy algorithms in economic epidemiology. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 249-268.
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[21] María Sánchez, James Lloyd-Smith, Brian Williams and Wayne Getz. Using mathematical models to monitor and evaluate the impact of public health interventions on epidemics: The case of the TB/HIV co-pandemic in Africa. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 135-186.
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[22] Rachael Neilan and Suzanne Lenhart. An introduction to optimal control with an application in disease modeling. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 67-81.
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[23] Sourya Shrestha and James Lloyd-Smith. Introduction to mathematical modeling of infectious diseases. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 1-46.
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[24] E. Lungu, M. Kgosimore and F. Nyabadza. Tools for mathematical epidemiology. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 47-66.
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[25] Wandi Ding and Suzanne Lenhart. Introduction to optimal control for discrete time models with an application to disease modeling. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 109-119.
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[26] Oluwaseun Sharomi and Abba Gumel. Mathematical analysis of HIV treatment model with variable viral load and infection stages. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 209-247.
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[27] Abdul-Aziz Yakubu. Introduction to discrete-time epidemic models. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 83-107.
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[28] Jonathan Dushoff. Incorporating stochasticity in simple models of disease spread. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 121-133.
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[29] Senelani Hove-Musekwa, Vengai Runyowa and Zindoga Mukandavire. Modelling the epidemiological and economic impact of HIV/AIDS with particular reference to Zimbabwe. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) 187-207.
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[30] Abba B. Gumel and Suzanne Lenhart (Editors). Modeling Paradigms and Analysis of Disease Transmission Models. DIMACS Series in Discrete Mathematics and Theoretical Computer Science 75 (2010) MR MR2761926.
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Results: 1 to 30 of 69 found      Go to page: 1 2 3