Mathematical Study of a Staged-Progression HIV Model with Imperfect Vaccine

Author:

Gumel A. B.,McCluskey Connell C.,van den Driessche P.

Publisher

Springer Science and Business Media LLC

Subject

Computational Theory and Mathematics,General Agricultural and Biological Sciences,Pharmacology,General Environmental Science,General Biochemistry, Genetics and Molecular Biology,General Mathematics,Immunology,General Neuroscience

Reference38 articles.

1. Anderson, R.M., May, R.M., 1991. Infectious Diseases of Humans. Oxford University Press, London/New York.

2. Arino, J., McCluskey, C.C., van den Driessche, P., 2003. Global results for an epidemic model with vaccination that exhibits backward bifurcation. SIAM J. Appl. Math. 64, 260–276.

3. Baggeley, R.F., Ferguson, N.M., Garnett, G.P., 2005. The epidemiological impact of antiretroviral use predicted by mathematical models: A review. Emerg. Themes Epidemiol. 2, 9. (http://www.ete-online.com/contect/2/1/9). Accessed September 20, 2005.

4. Blower, S.M., McLean, A.R., 1994. Prophylactic vaccines, risk behavior change, and the probability of eradicating HIV in San Francisco. Science 265, 1451–1454.

5. Brauer, F., Castillo-Chavez, C., 2000. Mathematical Models in Population Biology and Epidemiology. Texts in Applied Mathematics Series, vol. 40. Springer-Verlag, New York.

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