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Endemic Models with Arbitrarily Distributed Periods of Infection I: Fundamental Properties of the Model.

, and . SIAM J. Appl. Math., 61 (3): 803-833 (2000)

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Mathematical Models for the Disease Dynamics of Tuberculosis, and . BU-1321-M. Cornell University, Ithaca, NY, (1998)On the Computation of R(o) and Its Role on Global Stability, , and . BU-1553-M. Cornell University, Ithaca, NY, (2002)The influence of anti-viral drug therapy on the evolution of HIV-1 pathogens., and . Disease Evolution: Models, Concepts, and Data Analyses, volume 71 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 161-179. DIMACS/AMS, (2006)Endemic Models with Arbitrarily Distributed Periods of Infection I: Fundamental Properties of the Model., and . SIAM J. Appl. Math., 61 (3): 803-833 (2000)El Uso de Modelos Mathematicos Para Analizar la Epidemiologia de la Tuberculosis, , and . BU-1390-M. Cornell University, Ithaca, NY, (1996)A partial differential equation model with age-structure and nonlinear recidivism: Conditions for a backward bifurcation and a general numerical implementation., , , and . Comput. Math. Appl., 78 (12): 3916-3930 (2019)A Distributed Delay Model for Tuberculosis, , and . BU-1389-M. Cornell University, Ithaca, NY, (1997)Optimal Vaccination Strategies for TB in Age-Structure Populations, and . BU-1323-M. Cornell University, Ithaca, NY, (1996)Mathematical Analysis of Age-Structured HIV-1 Dynamics with Combination Antiretroviral Therapy., , and . SIAM J. Appl. Math., 67 (3): 731-756 (2007)