Interpreting catch per unit effort data to assess the status of individual stocks and communities
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Detecting the presence-absence of bluefin tuna by automated analysis of medium-range sonars on fishing vesselsPopulation assessment of tropical tuna based on their associative behavior around floating objects.Intense habitat-specific fisheries-induced selection at the molecular Pan I locus predicts imminent collapse of a major cod fishery.Fear of fishers: human predation explains behavioral changes in coral reef fishes.Population growth rates of reef sharks with and without fishing on the great barrier reef: robust estimation with multiple modelsRelative abundance and size of coastal sharks derived from commercial shark longline catch and effort data.Population trends in Pacific Oceanic sharks and the utility of regulations on shark finning.Range contraction in large pelagic predators.Geo-Referenced, Abundance Calibrated Ocean Distribution of Chinook Salmon (Oncorhynchus tshawytscha) Stocks across the West Coast of North America.From forager tracks to prey distributions: an application to tuna vessel monitoring systems (VMS).Trends and stability of inland fishery resources in Japanese lakes: introduction of exotic piscivores as a driver.Interannual variability in the skate assemblage on the South Patagonian shelf and slope.A Global Analysis of the Relationship between Farmed Seaweed Production and Herbivorous Fish CatchComplex interplays among population dynamics, environmental forcing, and exploitation in fisheries.Catch rates, composition and fish size from reefs managed with periodically-harvested closures.Absolute abundance of southern bluefin tuna estimated by close-kin mark-recapture.Identifying target reference points for harvesting assessment-limited wildlife populations: a case study.Rising catch variability preceded historical fisheries collapses in Alaska.Data reconstruction can improve abundance index estimation: An example using Taiwanese longline data for Pacific bluefin tuna.Encounter data in resource management and ecology: pitfalls and possibilitiesDo rebuttals affect future science?Standardization of a geo-referenced fishing data set for the Indian Ocean bigeye tuna, <i>Thunnus obesus</i> (1952–2014)Local people see and care most? Severe depletion of inshore fisheries and its consequences for Māori communities in New ZealandBuilding confidence in projections of the responses of living marine resources to climate changeBiomass consumption by breeding seabirds in the western Indian Ocean: indirect interactions with fisheries and implications for managementTrade-offs associated with different modeling approaches for assessment of fish and shellfish responses to climate change
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P2860
Interpreting catch per unit effort data to assess the status of individual stocks and communities
description
im September 2006 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована у вересні 2006
@uk
name
Interpreting catch per unit ef ...... ividual stocks and communities
@en
Interpreting catch per unit ef ...... ividual stocks and communities
@nl
type
label
Interpreting catch per unit ef ...... ividual stocks and communities
@en
Interpreting catch per unit ef ...... ividual stocks and communities
@nl
prefLabel
Interpreting catch per unit ef ...... ividual stocks and communities
@en
Interpreting catch per unit ef ...... ividual stocks and communities
@nl
P2093
P1476
Interpreting catch per unit ef ...... ividual stocks and communities
@en
P2093
P304
P356
10.1016/J.ICESJMS.2006.05.008
P577
2006-09-01T00:00:00Z