Management of populations in conservation, harvesting and control.
暂无分享,去创建一个
[1] A. Ives,et al. Metapopulation Dynamics and Pest Control in Agricultural Systems , 1997, The American Naturalist.
[2] R. Lande. Risks of Population Extinction from Demographic and Environmental Stochasticity and Random Catastrophes , 1993, The American Naturalist.
[3] R. May,et al. STABILITY IN INSECT HOST-PARASITE MODELS , 1973 .
[4] E. J. Milner-Gulland,et al. A STOCHASTIC DYNAMIC PROGRAMMING MODEL FOR THE MANAGEMENT OF THE SAIGA ANTELOPE , 1997 .
[5] Ray Hilborn,et al. The Influence of Model Structure on Conclusions about the Viability and Harvesting of Serengeti Wildebeest , 1997 .
[6] Arief Lukman Hakim,et al. Managing Tropical Rice Pests Through Conservation of Generalist Natural Enemies and Alternative Prey , 1996 .
[7] M. Groom,et al. The Analysis of Population Persistence: An Outlook on the Practice of Viability Analysis , 1998 .
[8] Wayne M. Getz,et al. Population harvesting: demographic models of fish, forest, and animal resources. , 1990 .
[9] R. Costantino,et al. NONLINEAR DEMOGRAPHIC DYNAMICS: MATHEMATICAL MODELS, STATISTICAL METHODS, AND BIOLOGICAL EXPERIMENTS' , 1995 .
[10] David A. Fournier,et al. A General Theory for Analyzing Catch at Age Data , 1982 .
[11] R. Noss. The Naturalists Are Dying off , 1996 .
[12] Mary Louise Flint,et al. Introduction to Integrated Pest Management , 1981, Springer US.
[13] Wayne M. Getz,et al. Modelling the biological control of insect pests: a review of host-parasitoid models , 1996 .
[14] D. Doak. Source‐Sink Models and the Problem of Habitat Degradation: General Models and Applications to the Yellowstone Grizzly , 1995 .
[15] R. Beverton,et al. On the dynamics of exploited fish populations , 1993, Reviews in Fish Biology and Fisheries.
[16] W. Murdoch,et al. Theory for Biological Control: Recent Developments , 1996 .
[17] R. Macarthur,et al. The Theory of Island Biogeography , 1969 .
[18] Anthony M. Starfield,et al. Choosing a Management Strategy: Two Structured Decision‐Making Methods for Evaluating the Predictions of Stochastic Simulation Models , 1995 .
[19] E. Simms,et al. Natural enemies: The population biology of predators, parasites and diseases , 1993 .
[20] Kenneth E. F. Watt,et al. Ecology and Resource Management , 1968 .
[21] M. Mangel,et al. Four Facts Every Conservation Biologists Should Know about Persistence , 1994 .
[22] D. A. Fournier. An Analysis of the Hecate Strait Pacific Cod Fishery Using an Age-structured Model Incorporating Density-dependent Effects , 1983 .
[23] Michael P. Hassell,et al. Aggregation and the Dynamics of Host-Parasitoid Systems: A Discrete-Generation Model with Within-Generation Redistribution , 1994, The American Naturalist.
[24] H. Pulliam,et al. Sources, Sinks, and Population Regulation , 1988, The American Naturalist.
[25] C. Walters,et al. Quantitative Fisheries Stock Assessment , 1992, Springer US.
[26] Ray F. Smith,et al. The integrated control concept , 1959 .
[27] G. A. Norton,et al. Decision tools for pest management , 1993 .
[28] R. May,et al. Aggregation of Predators and Insect Parasites and its Effect on Stability , 1974 .
[29] Christine Woodcock,et al. Intercropping increases parasitism of pests , 1997, Nature.
[30] A. Parma. What can adaptive management do for our fish, forests, food, and biodiversity? , 1998 .
[31] M. Gilpin,et al. Metapopulation Biology: Ecology, Genetics, and Evolution , 1997 .
[32] W. Murdoch,et al. Biological Control of Olive Scale and Its Relevance to Ecological Theory , 1984, The American Naturalist.
[33] Colin W. Clark,et al. Mathematical Bioeconomics: The Optimal Management of Renewable Resources. , 1993 .
[34] Allan Stewart-Oaten,et al. Aggregation by Parasitoids and Predators: Effects on Equilibrium and Stability , 1989, The American Naturalist.
[35] C. A. Shoemaker,et al. Applications of dynamic programming and other optimization methods in pest management , 1981 .
[36] J. Roland. After the decline: what maintains low winter moth density after successful biological control? , 1994 .
[37] M. Hassell,et al. After the Decline : What Maintains Low Winter Moth Density after Successful Biological Control ? , 2022 .
[38] K. D. Cocks,et al. Using mathematical programming to address the multiple reserve selection problem: An example from the Eyre Peninsula, South Australia , 1989 .
[39] J. Waage,et al. Predictive modelling in biological control : the mango mealy bug (Rastrococcus invadens) and its parasitoids , 1991 .
[40] J. Roughgarden,et al. A Metapopulation Model with Private Property and a Common Pool , 1997 .
[41] H. Possingham,et al. Decision Theory and Biodiversity Management: How to manage a metapopulation , 1996 .
[42] Ray F. Smith,et al. THE INTEGRATION OF CHEMICAL AND BIOLOGICAL CONTROL OF , 1959 .
[43] M. Boyce. Population Viability Analysis , 1992 .
[44] J. Roland,et al. Insect parasitoid species respond to forest structure at different spatial scales , 1997, Nature.
[45] Milner B. Schaefer. Some aspects of the dynamics of populations important to the management of the commercial marine fisheries , 1991 .
[46] R. Hilborn,et al. The Ecological Detective: Confronting Models with Data , 1997 .
[47] Carl J. Walters,et al. Adaptive Management of Renewable Resources , 1986 .
[48] Scott Ferson,et al. Risk assessment in conservation biology , 1993 .