The Control of Biological Invasions in the World's Oceans
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Cleft, crevice, or the inner thigh: 'another place' for the establishment of the invasive barnacle Austrominius modestus (Darwin, 1854)How far could the alien boatman Trichocorixa verticalis verticalis spread? Worldwide estimation of its current and future potential distributionUsing habitat suitability index and particle dispersion models for early detection of marine invaders.Can novel genetic analyses help to identify low-dispersal marine invasive species?The whereabouts of an ancient wanderer: global phylogeography of the solitary ascidian Styela plicata.Invasive Ponto-Caspian amphipods and fish increase the distribution range of the acanthocephalan Pomphorhynchus tereticollis in the river Rhine.Augmentative biocontrol in natural marine habitats: persistence, spread and non-target effects of the sea urchin Evechinus chloroticus.It's a wrap: encapsulation as a management tool for marine biofouling.Real-time PCR detection of Didemnum perlucidum (Monniot, 1983) and Didemnum vexillum (Kott, 2002) in an applied routine marine biosecurity context.DNA Barcoding of the Korean Lymantria Hübner, 1819 (Lepidoptera: Erebidae: Lymantriinae) for Quarantine Inspection.Undaria pinnatifida: A case study to highlight challenges in marine invasion ecology and managementUsing expert judgment to estimate marine ecosystem vulnerability in the California Current.An empirical probability model of detecting species at low densities.Effectiveness of the California state ban on the sale of Caulerpa species in aquarium retail stores in southern California.When r-selection may not predict introduced-species proliferation: predation of a nonnative oyster.Estimating the rate of biological introductions: Lessepsian fishes in the Mediterranean.Occurrence and diversity of barnacles on international ships visiting Osaka Bay, Japan, and the risk of their introduction.Parasite-mediated enemy release and low biotic resistance may facilitate invasion of Atlantic coral reefs by Pacific red lionfish (Pterois volitans)Spatially explicit risk assessment for coastal invaders under different management scenariosEcological impacts of non-native Pacific oysters (Crassostrea gigas) and management measures for protected areas in EuropeSome Bryozoa species recently introduced into the Azores: reproductive strategies as a proxy for further spreadPhylogeographic analysis of the brown algaCutleria multifida(Tilopteridales, Phaeophyceae) suggests a complicated introduction historyMixed but not admixed: a spatial analysis of genetic variation of an invasive ascidian on natural and artificial substratesNiche conservatism and the potential for the crayfishProcambarus clarkiito invade South AmericaMolecular identification of two species of the carnivorous sea slug Philine, invaders of the US west coastA review of ballast water management practices and challenges in harsh and arctic environmentsSchizymenia dubyi (Rhodophyta, Schizymeniaceae), a new introduced species in ArgentinaThe reproductive ecology of the invasive ascidian, Styela clava, in Auckland Harbour, New ZealandUse of niche models in invasive species risk assessmentsDistribution and population dynamics of the introduced seaweed Grateloupia turuturu (Halymeniaceae, Rhodophyta) along the Portuguese coastUse of DNA barcoding to detect invertebrate invasive species from diapausing eggsThe direct physical, chemical and biotic impacts on Australian coastal waters due to recreational boatingEstablishment and ecosystem effects of the alien invasive red king crab (Paralithodes camtschaticus) in the Barents Sea-a reviewEcophysiological studies of the non-indigenous speciesGracilaria vermiculophylla(Rhodophyta) and its abundance patterns in Ria de Aveiro lagoon, PortugalIdentification of non-indigenous marine macroalgae from New Zealand aquaria outletsThe invasion of Undaria pinnatifida to a Macrocystis pyrifera kelp in Patagonia (Argentina, south-west Atlantic)Introduced and cryptogenic species and their management in Paranaguá Bay, BrazilMarine biogeography and ecology: invasions and introductionsLONG-TERM CHANGES IN THE STRUCTURE OF INTERTIDAL ASSEMBLAGES AFTER INVASION BY SARGASSUM MUTICUM (PHAEOPHYTA)1
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The Control of Biological Invasions in the World's Oceans
description
im Oktober 2001 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в жовтні 2001
@uk
name
The Control of Biological Invasions in the World's Oceans
@en
The Control of Biological Invasions in the World's Oceans
@nl
type
label
The Control of Biological Invasions in the World's Oceans
@en
The Control of Biological Invasions in the World's Oceans
@nl
prefLabel
The Control of Biological Invasions in the World's Oceans
@en
The Control of Biological Invasions in the World's Oceans
@nl
P2093
P2860
P1433
P1476
The Control of Biological Invasions in the World's Oceans
@en
P2093
A. Mathews-Amos
F. G. Howarth
J. E. Purcell
J. T. Carlton
R. L. Haedrich
P2860
P304
P356
10.1046/J.1523-1739.2001.99487.X
P577
2001-10-20T00:00:00Z