Modeling biomarker dynamics with implications for the treatment of prostate cancer.
Hedican, Erin B., Kemper, John T., Lanie, Nicole M. (2007)
Computational & Mathematical Methods in Medicine
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Hedican, Erin B., Kemper, John T., Lanie, Nicole M. (2007)
Computational & Mathematical Methods in Medicine
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Jarosław Śmieja (2010)
International Journal of Applied Mathematics and Computer Science
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The paper deals with the analysis of signaling pathways aimed at uncovering new regulatory processes regulating cell responses. First, general issues of comparing simulation and experimental data are discussed, and various aspects of data normalization are covered. Then, a model of a particular signaling pathway, induced by Interferon-β, is briefly introduced. It serves as an example illustrating how mathematical modeling can be used for inferring the structure of a regulatory system...
Byrne, H.M., Chaplain, M.A.J., Pettet, G.J., McElwain, D.L.S. (1999)
Journal of Theoretical Medicine
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Panetta, John Carl, Chaplain, Mark A.J., Cameron, David (2000)
Journal of Theoretical Medicine
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Kramer, Ivan (2008)
Computational & Mathematical Methods in Medicine
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Michelson, Seth (1997)
Journal of Theoretical Medicine
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Gavaghan, D.J., Brady, J.Michael, Behrenbruch, C.P., Highnam, R.P., Maini, P.K. (2002)
Journal of Theoretical Medicine
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Duffin, R.Paul, Tullis, Richard H. (2002)
Journal of Theoretical Medicine
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Baker, C.T.H., Bocharov, G.A., Paul, C.A.H. (1997)
Journal of Theoretical Medicine
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Kohandel, M., Haselwandter, C.A., Kardar, M., Sengupta, S., Sivaloganathan, S. (2011)
Computational & Mathematical Methods in Medicine
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Beschkov, V, Sapundzhiev, T, Petrov, K, Vasileva, E (2010)
Serdica Journal of Computing
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Mathematical modeling may have different purposes in chemical and biochemical engineering sciences. One of them is to confirm or to reject kinetic models for certain processes, or to evaluate the importance of some transport phenomena on the net chemical or biochemical reaction rate. In the present paper different microbial processes are considered and modeled for evaluation of kinetic constants for batch and continuous processes accomplished by free and immobilized microbial cells....
Zuzanna Szymańska (2003)
International Journal of Applied Mathematics and Computer Science
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A basic mathematical model of the immune response when cancer cells are recognized is proposed. The model consists of six ordinary differential equations. It is extended by taking into account two types of immunotherapy: active immunotherapy and adoptive immunotherapy. An analysis of the corresponding models is made to answer the question which of the presented methods of immunotherapy is better. The analysis is completed by numerical simulations which show that the method of adoptive...