Stochastic Population Dynamics in Ecology and Conservation
Стохастическая динамика популяций в экологии и охране природы
2003-04-03
SCID: 54.1/fukcu9yu
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demographic and environmental stochasticitymetapopulation dynamicspopulation viability analysisspecies diversity partitioningstochastic population dynamics
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Abstract (AI)
All populations fluctuate stochastically, creating a risk of extinction that does not exist in deterministic models, with fundamental consequences for both pure and applied ecology. This book provides an introduction to stochastic population dynamics, combining classical background material with a variety of modern approaches, including previously unpublished results by the authors, illustrated with examples from bird and mammal populations, and insect communities. Demographic and environmental stochasticity are introduced with statistical methods for estimating them from field data. The long-run growth rate of a population is explained and extended to include age structure with both demographic and environmental stochasticity. Diffusion approximations facilitate the analysis of extinction dynamics and the duration of the final decline. Methods are developed for estimating delayed density dependence from population time series using life history data. Metapopulation viability and the spatial scale of population fluctuations and extinction risk are analyzed. Stochastic dynamics and statistical uncertainty in population parameters are incorporated in Population Viability Analysis and strategies for sustainable harvesting. Statistics of species diversity measures and species abundance distributions are described, with implications for rapid assessments of biodiversity, and methods are developed for partitioning species diversity into additive components. Analysis of the stochastic dynamics of a tropical butterfly community in space and time indicates that most of the variance in the species abundance distribution is due to ecological heterogeneity among species, so that real communities are far from neutral.
Key Findings
1
Analysis of a tropical butterfly community found that most variance in species abundance distributions arises from ecological heterogeneity among species, indicating that real communities are far from neutral.
2
Diffusion approximations are used to analyze extinction dynamics, including the duration of populations’ final declines.
3
Stochastic demographic and environmental fluctuations create extinction risks absent from deterministic population models, with major ecological and conservation consequences.
4
The book develops statistical methods for estimating demographic and environmental stochasticity from field data and incorporates both into population growth analyses.
5
The framework addresses delayed density dependence, metapopulation viability, spatial variation in fluctuations, population viability analysis, and sustainable harvesting under stochastic uncertainty.
Research Object
stochastic population dynamics in ecological populations and communities, including bird, mammal, insect, and tropical butterfly populations
Research Subject
stochastic fluctuations, demographic and environmental variability, growth and extinction dynamics, density dependence, metapopulation viability, biodiversity patterns, and implications for conservation and sustainable harvesting
Publication Details
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2003-04-03
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