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The Mathematics Behind Biological Invasions - Mark A. Lewis, Sergei V. Petrovskii, Jonathan R. Potts

The Mathematics Behind Biological Invasions

Buch | Softcover
XVI, 362 Seiten
2018 | 1. Softcover reprint of the original 1st ed. 2016
Springer International Publishing (Verlag)
978-3-319-81182-6 (ISBN)
CHF 85,35 inkl. MwSt

This book investigates the mathematical analysis of biological invasions. Unlike purely qualitative treatments of ecology, it draws on mathematical theory and methods, equipping the reader with sharp tools and rigorous methodology. Subjects include invasion dynamics, species interactions, population spread, long-distance dispersal, stochastic effects, risk analysis, and optimal responses to invaders. While based on the theory of dynamical systems, including partial differential equations and integrodifference equations, the book also draws on information theory, machine learning, Monte Carlo methods, optimal control, statistics, and stochastic processes. Applications to real biological invasions are included throughout. Ultimately, the book imparts a powerful principle: that by bringing ecology and mathematics together, researchers can uncover new understanding of, and effective response strategies to, biological invasions. It is suitable for graduate students and established researchers in mathematical ecology.

Mark Lewis has worked for over 25 years on developing and applying mathematical methods to the dynamics of biological invasions. His research focuses on population spread, Allee effects, ecological dynamics, control, and risk analysis. His research also includes building connections with real biological processes and data. He is Chief Editor of the Journal of Mathematical Biology and is on seven other editorial boards. He is a Fellow of the Fields Institute and has won a number of prizes for his research in applied mathematics. His current position is Senior Canada Research Chair in Mathematical Biology at the University of Alberta, and he is a Fellow of the Royal Society of Canada. Sergei Petrovskii is an applied mathematician with about 25 years of research experience in mathematical ecology and ecological modelling. His research spans across a broad variety of problems of ecology and population dynamics, with a particular emphasis on ecological pattern formation, biological invasions, and movement ecology. He has previously published two research monographs and more than one hundred papers in peer-reviewed journals. He currently holds the position of a Chair in Applied Mathematics at the University of Leicester, UK. He is also the Editor-in-Chief of Ecological Complexity and a member of the editorial board of Journal of Biological Systems.


Introduction.-Dynamics of Biological Invasions.-Reaction-Diffusion Models: Single Species .- Invasion in a Multispecies System.- Long-Distance Dispersal and Spread.- A User's Guide to Integrodifference Models for Invasive Spread.- Stochasticity and Invasion Dynamics.- Stochastic Spread.- Assessing Invasion Risk.- Responding to invasions: Detection, control, and adaptation.- Appendix.-References.-Index.



"This book is devoted to the mathematical modeling of biological invasions and the investigation techniques used to understand biological invasion processes and dynamics. ... The book is suitable for researchers working in environmental sciences, mathematical biology, mathematical ecology, applied mathematics, and environmental economics, as well as for graduate students and upper-level undergraduate students." (Natali Hritonenko, Mathematical Reviews, December, 2016)

Erscheinungsdatum
Reihe/Serie Interdisciplinary Applied Mathematics
Zusatzinfo XVI, 362 p. 106 illus., 19 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Gewicht 581 g
Themenwelt Informatik Weitere Themen Bioinformatik
Mathematik / Informatik Mathematik Angewandte Mathematik
Schlagworte 29B05, 92D40, 37N25, 35Q92, 62P10 • Biological Invasions • Dynamical Systems • Mathematical Biology • Partial differential equations • population spread • Stochastic Dynamics
ISBN-10 3-319-81182-7 / 3319811827
ISBN-13 978-3-319-81182-6 / 9783319811826
Zustand Neuware
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