Alexander B. Kurzhanski / Karl Sigmund (Hgg.)
Evolution and Control in Biological Systems
Proceedings of the IIASA Workshop, Laxenburg, Austria, 30 November ¿ 4 December 1987
Herausgegeben:Kurzhanski, Alexander B.; Sigmund, Karl
Alexander B. Kurzhanski / Karl Sigmund (Hgg.)
Evolution and Control in Biological Systems
Proceedings of the IIASA Workshop, Laxenburg, Austria, 30 November ¿ 4 December 1987
Herausgegeben:Kurzhanski, Alexander B.; Sigmund, Karl
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Proceedings of the IIASA Workshop, November 30-December 4, 1987, Laxenburg, Austria
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Proceedings of the IIASA Workshop, November 30-December 4, 1987, Laxenburg, Austria
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: IIASA / Springer / Springer Netherlands
- Artikelnr. des Verlages: 978-0-7923-0219-3
- 1989.
- Seitenzahl: 200
- Erscheinungstermin: 31. März 1989
- Englisch
- Abmessung: 241mm x 160mm x 16mm
- Gewicht: 463g
- ISBN-13: 9780792302193
- ISBN-10: 0792302192
- Artikelnr.: 22016166
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
- Verlag: IIASA / Springer / Springer Netherlands
- Artikelnr. des Verlages: 978-0-7923-0219-3
- 1989.
- Seitenzahl: 200
- Erscheinungstermin: 31. März 1989
- Englisch
- Abmessung: 241mm x 160mm x 16mm
- Gewicht: 463g
- ISBN-13: 9780792302193
- ISBN-10: 0792302192
- Artikelnr.: 22016166
- Herstellerkennzeichnung
- Books on Demand GmbH
- In de Tarpen 42
- 22848 Norderstedt
- info@bod.de
- 040 53433511
I. Stability and Persistence for Ecological Models.- Stability Conditions for Two Predator One Prey Systems.- A Unified Approach to Persistence.- Reflections and Calculations on a Prey-Predator-Patch System Problem.- A Homotopy Technique for a Linear Generalization of Volterra Models.- Cooperative Systems Theory and Global Stability of Diffusion Models.- II. Selection and Evolutionary Games.- The n-Person War of Attrition.- Mutation-Selection Models in Population Genetics and Evolutionary Game Theory.- III. Demography for Structured Opulations.- Pair Formation in Age-Structured Populations.- The Markov Structure of Population Growth.- IV. Mathematical Models of the Immune Response.- On a Generalized Mathematical Model of the Immune Response.- Recent Results in Mathematical Modeling of Infectious Diseases.- Applications of the Mathematical Model of Immunological Tolerance to Immunoglobulin Suppression and AIDS.- Distribution of Recirculating Lymphocytes: A Stochastic Model Foundation.- V. Simulation and Control in Medicine.- Recent Progress in 3-D Computer Simulation of Tumor Growth and Treatment.- Mathematical Simulation of the Immunomodulating Role of Energy Metabolism in Support of Synergism and Antagonism of the Compartments of an Immune System.- Interleukin 2 and Immune Response Control Mathematical Model.
I. Stability and Persistence for Ecological Models.- Stability Conditions for Two Predator One Prey Systems.- A Unified Approach to Persistence.- Reflections and Calculations on a Prey-Predator-Patch System Problem.- A Homotopy Technique for a Linear Generalization of Volterra Models.- Cooperative Systems Theory and Global Stability of Diffusion Models.- II. Selection and Evolutionary Games.- The n-Person War of Attrition.- Mutation-Selection Models in Population Genetics and Evolutionary Game Theory.- III. Demography for Structured Opulations.- Pair Formation in Age-Structured Populations.- The Markov Structure of Population Growth.- IV. Mathematical Models of the Immune Response.- On a Generalized Mathematical Model of the Immune Response.- Recent Results in Mathematical Modeling of Infectious Diseases.- Applications of the Mathematical Model of Immunological Tolerance to Immunoglobulin Suppression and AIDS.- Distribution of Recirculating Lymphocytes: A Stochastic Model Foundation.- V. Simulation and Control in Medicine.- Recent Progress in 3-D Computer Simulation of Tumor Growth and Treatment.- Mathematical Simulation of the Immunomodulating Role of Energy Metabolism in Support of Synergism and Antagonism of the Compartments of an Immune System.- Interleukin 2 and Immune Response Control Mathematical Model.