An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
about
The risk of establishment of aquatic invasive species: joining invasibility and propagule pressureUnderstanding Acceptable Level of Risk: Incorporating the Economic Cost of Under-Managing Invasive SpeciesIntroduced and invasive cactus species: a global reviewOptimal and robust control of invasive alien species spreading in homogeneous landscapesMultiple drivers of decline in the global status of freshwater crayfish (Decapoda: Astacidea).An approach to incorporate individual personality in modeling fish dispersal across in-stream barriers.Using structured expert judgment to assess invasive species prevention: Asian carp and the Mississippi-Great Lakes hydrologic connection.How far could the alien boatman Trichocorixa verticalis verticalis spread? Worldwide estimation of its current and future potential distributionMolecular detection of invasive species in heterogeneous mixtures using a microfluidic carbon nanotube platformWill climate change increase the risk of plant invasions into mountains?Genome size estimates for two important freshwater molluscs, the zebra mussel (Dreissena polymorpha) and the schistosomiasis vector snail (Biomphalaria glabrata).Forecasting the spread of invasive rainbow smelt in the Laurentian Great Lakes region of North America.Distinguishing between invasions and habitat changes as drivers of diversity loss among California's freshwater fishes.Forecasting the expansion of zebra mussels in the United States.Linking economic activities to the distribution of exotic plants.Socioeconomic legacy yields an invasion debtThe success of animal invaders.Analyzing the social factors that influence willingness to pay for invasive alien species management under two different strategies: eradication and prevention.Are non-native plants perceived to be more risky? Factors influencing horticulturists' risk perceptions of ornamental plant species.Climatic niche shifts are rare among terrestrial plant invaders.DNA-based species detection capabilities using laser transmission spectroscopy.TEASIng apart alien species risk assessments: a framework for best practices.Trading green backs for green crabs: evaluating the commercial shellfish harvest at risk from European green crab invasion.Use of ecological niche models to predict the distribution of invasive species: a scientometric analysis.Targeted research to improve invasive species management: yellow crazy ant Anoplolepis gracilipes in Samoa.Relative invasion risk for plankton across marine and freshwater systems: examining efficacy of proposed international ballast water discharge standards.The development of a plant risk evaluation (PRE) tool for assessing the invasive potential of ornamental plantsEnvironmental Degradation in a Eutrophic Shallow Lake is not Simply Due to Abundance of Non-native Cyprinus carpio.Improving invasive species management by integrating priorities and contributions of scientists and decision makersIntegrating spread dynamics and economics of timber production to manage Chinese tallow invasions in southern U.S. forestlandsA tough egg to crack: recreational boats as vectors for invasive goby eggs and transdisciplinary management approaches.Invasive species triggers a massive loss of ecosystem services through a trophic cascadeGenerating an agricultural risk map based on limited ecological information: A case study using Sicyos angulatus.Predicting global invasion risks: a management tool to prevent future introductions.Assessing and Managing the Current and Future Pest Risk from Water Hyacinth, (Eichhornia crassipes), an Invasive Aquatic Plant Threatening the Environment and Water SecurityEvolution and biological control.Early detection monitoring for larval dreissenid mussels: how much plankton sampling is enough?Agricultural biosecurity.Modelling the impact and control of an infectious disease in a plant nursery with infected plant material inputsAquaculture enclosures relate to the establishment of feral populations of introduced species.
P2860
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P2860
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
description
2002 nî lūn-bûn
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2002年の論文
@ja
2002年学术文章
@wuu
2002年学术文章
@zh
2002年学术文章
@zh-cn
2002年学术文章
@zh-hans
2002年学术文章
@zh-my
2002年学术文章
@zh-sg
2002年學術文章
@yue
2002年學術文章
@zh-hant
name
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@en
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@nl
type
label
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@en
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@nl
altLabel
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species
@en
prefLabel
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@en
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@nl
P2093
P356
P1476
An ounce of prevention or a pound of cure: bioeconomic risk analysis of invasive species.
@en
P2093
David Finnoff
David M Lodge
Gary Lamberti
Jason F Shogren
Mark A Lewis
P304
P356
10.1098/RSPB.2002.2179
P407
P50
P577
2002-12-01T00:00:00Z