MODEL OF SLOWING THE SPREAD OF GYPSY MOTH (LEPIDOPTERA: LYMANTRIIDAE) WITH A BARRIER ZONE
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Summary
A model that assumes establishment of isolated colonies beyond the expanding population front, which estimates the rate of spread from two functions: colonization rate as a function of the distance from the population front and population numbers in a colony as afunction of colony age.
- Type
- article
- Published
- 1998-11-01
- Cited by
- 230
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W2019046603
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11534996
Keywords
Gypsy moth, Lepidoptera genitalia, Lymantria dispar, Ecology, Biology
References
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- Spatial Contact Models for Ecological and Epidemic Spread
- An insect out of control? The potential for spread and establishment of the gypsy moth in new forest areas in the United States
- Potential benefits of slowing the gypsy moth's spread.
- The Gypsy Moth: Research Toward Integrated Pest Management
- Gypsy moth invasion in North America: a quantitative analysis
- Random dispersal in theoretical populations
- The velocity of spatial population expansion
- Modelling of two-dimensional spatial effects on the spread of forest pests and their management
- Metapopulation dynamics: a brief his-tory and conceptual domain
- Dynamics of Biological Invasions
- Insect pest control by a spatial barrier
- Appalachian gypsy-moth integrated pest-management project
- Modeling Stratified Diffusion in Biological Invasions
- Density/height profile and long-range dispersal of first-instar gypsy moth (Lepidoptera: Lymantriidae)
- Invasion by Exotic Forest Pests: A Threat to Forest Ecosystems
- POPULATION DYNAMICS OF GYPSY MOTH IN NORTH AMERICA
- Optimizing the Use of Barrier Zones to Slow the Spread of Gypsy Moth (Lepidoptera: Lymantriidae) in North America
- Prediction of gypsy moth (Lepidoptera: Lymantriidae) mating success from pheromone trap counts.
- Methods for monitoring the spread of gypsy moth (Lepidoptera: Lymantriidae) populations in the Appalachian Mountains
Cited by
- Integrodifference equations in patchy landscapes
- Dos and Don'ts in Augmentative Biological Control: Insights from Mathematical Modelling
- Forest edges enhance mate-finding in the European gypsy moth, Lymantria dispar
- Mathematical Modeling of Intraguild Predation and its Dynamics in Ecology
- Interactions between cacti and cactus -feeding insects: Causes and consequences of variation
- Assessing the Impacts of Global Climate Changeon Forest Pests
- Population processes during establishment and spread of invading species: implications for survey and detection programs
- Determining factors for Eurasian watermilfoil (M. spicatum) spread in and around Lake Tahoe, CA-NV
- Epidemic Spread of a Lesion-Forming PlantPathogen – Analysis of a Mechanistic Model with Infinite Age Structure
- Exactly Solvable Models of Biological Invasion
- Modelling biological invasions : population cycles, waves and time delays
- Biological invasion and biological control: A case study of the gypsy moth spread
- Decisionmaking under risk in invasive species management: risk management theory and applications.
- Modeling potential movements of the emerald ash borer: the model framework
- Modeling the Effects of Mitigating Apple Maggot Spread into Apple Production Region of Washington State
- Cost analysis and biological ramifications for implementing the gypsy moth Slow the Spread Program
- The use of Bacillus thuringiensis kurstaki for managing gypsy moth populations under the Slow the Spread Program, 1996-2010, relative to the distributional range of threatened and endangered species
- Scenario Analysis for Seeking Cost-Effective Management Using Cellular Automaton-based Model of Invasive Species
- Finding optimal control strategies for invasive species: a density‐structured model for Spartina alterniflora
- Mapping host-species abundance of three major exotic forest pests
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