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Mathematical Approaches for Emerging and Reemerging Infectious Diseases: Models, Methods, and Theory (Hardcover, 2002 ed.):... Mathematical Approaches for Emerging and Reemerging Infectious Diseases: Models, Methods, and Theory (Hardcover, 2002 ed.)
Carlos Castillo-Chavez, Sally Blower, Pauline Van Den Driessche, Denise Kirschner, Abdul-Aziz Yakubu
R5,485 Discovery Miles 54 850 Ships in 10 - 15 working days

This book grew out of the discussions and presentations that began during the Workshop on Emerging and Reemerging Diseases (May 17-21, 1999) sponsored by the Institute for Mathematics and its Application (IMA) at the University of Minnesota with the support of NIH and NSF. The workshop started with a two-day tutorial session directed to ecologists, epidemiologists, immunologists, mathematicians, and scientists interested in the study of disease dynamics. The core of this second volume, Volume 126, covers research contributions on the use of dynamical systems (deterministic discrete, delay, PDEs, and ODEs models) and stochastic models in disease dynamics. Contributions motivated by the study of diseases like influenza, HIV, tuberculosis, and macroparasitic like schistosomiasis are also included. This second volume requires additional mathematical sophistication, and graduate students in applied mathematics, scientists in the natural, social, and health sciences, or mathematicians who want to enter the field of mathematical and theoretical epidemiology will find it useful. The collection of contributors includes many who have been in the forefront of the development of the subject.

Mathematical Approaches for Emerging and Reemerging Infectious Diseases: An Introduction (Hardcover, 2002 ed.): Carlos... Mathematical Approaches for Emerging and Reemerging Infectious Diseases: An Introduction (Hardcover, 2002 ed.)
Carlos Castillo-Chavez, Sally Blower, Pauline Van Den Driessche, Denise Kirschner, Abdul-Aziz Yakubu
R4,452 Discovery Miles 44 520 Ships in 12 - 17 working days

This book grew out of the discussions and presentations that began during the Workshop on Emerging and Reemerging Diseases (May 17-21, 1999) sponsored by the Institute for Mathematics and its Application (IMA) at the University of Minnesota with the support of NIH and NSF. The workshop started with a two-day tutorial session directed to ecologists, epidemiologists, immunologists, mathematicians, and scientists interested in the study of disease dynamics. The core of this first volume, Volume 125, covers tutorial and research contributions on the use of dynamical systems (deterministic discrete, delay, PDEs, and ODEs models) and stochastic models in disease dynamics. The volume includes the study of cancer, HIV, pertussis, and tuberculosis. Beginning graduate students in applied mathematics, scientists in the natural, social, or health sciences or mathematicians who want to enter the fields of mathematical and theoretical epidemiology will find this book useful.

Mathematical Approaches for Emerging and Reemerging Infectious Diseases: Models, Methods, and Theory (Paperback, Softcover... Mathematical Approaches for Emerging and Reemerging Infectious Diseases: Models, Methods, and Theory (Paperback, Softcover reprint of the original 1st ed. 2002)
Carlos Castillo-Chavez, Sally Blower, Pauline Van Den Driessche, Denise Kirschner, Abdul-Aziz Yakubu
R5,456 Discovery Miles 54 560 Ships in 10 - 15 working days

This IMA Volume in Mathematics and its Applications MATHEMATICAL APPROACHES FOR EMERGING AND REEMERGING INFECTIOUS DISEASES: MODELS, AND THEORY METHODS is based on the proceedings of a successful one week workshop. The pro ceedings of the two-day tutorial which preceded the workshop "Introduction to Epidemiology and Immunology" appears as IMA Volume 125: Math ematical Approaches for Emerging and Reemerging Infectious Diseases: An Introduction. The tutorial and the workshop are integral parts of the September 1998 to June 1999 IMA program on "MATHEMATICS IN BI OLOGY. " I would like to thank Carlos Castillo-Chavez (Director of the Math ematical and Theoretical Biology Institute and a member of the Depart ments of Biometrics, Statistics and Theoretical and Applied Mechanics, Cornell University), Sally M. Blower (Biomathematics, UCLA School of Medicine), Pauline van den Driessche (Mathematics and Statistics, Uni versity of Victoria), and Denise Kirschner (Microbiology and Immunology, University of Michigan Medical School) for their superb roles as organizers of the meetings and editors of the proceedings. Carlos Castillo-Chavez, es pecially, made a major contribution by spearheading the editing process. I am also grateful to Kenneth L. Cooke (Mathematics, Pomona College), for being one of the workshop organizers and to Abdul-Aziz Yakubu (Mathe matics, Howard University) for serving as co-editor of the proceedings. I thank Simon A. Levin (Ecology and Evolutionary Biology, Princeton Uni versity) for providing an introduction.

Mathematical Approaches for Emerging and Reemerging Infectious Diseases: An Introduction (Paperback, Softcover reprint of... Mathematical Approaches for Emerging and Reemerging Infectious Diseases: An Introduction (Paperback, Softcover reprint of hardcover 1st ed. 2002)
Carlos Castillo-Chavez, Sally Blower, Pauline Van Den Driessche, Denise Kirschner, Abdul-Aziz Yakubu
R4,255 Discovery Miles 42 550 Ships in 10 - 15 working days

This book grew out of the discussions and presentations that began during the Workshop on Emerging and Reemerging Diseases (May 17-21, 1999) sponsored by the Institute for Mathematics and its Application (IMA) at the University of Minnesota with the support of NIH and NSF. The workshop started with a two-day tutorial session directed at ecologists, epidemiologists, immunologists, mathematicians, and scientists interested in the study of disease dynamics. The core of this first volume, Volume 125, covers tutorial and research contributions on the use of dynamical systems (deterministic discrete, delay, PDEs, and ODEs models) and stochastic models in disease dynamics. The volume includes the study of cancer, HIV, pertussis, and tuberculosis.
Beginning graduate students in applied mathematics, scientists in the natural, social, or health sciences or mathematicians who want to enter the fields of mathematical and theoretical epidemiology will find this book useful.

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