Marine reserve networks for species that move within a home range.
about
Ordinary and Extraordinary Movement Behaviour of Small Resident Fish within a Mediterranean Marine Protected AreaBayesian State-Space Modelling of Conventional Acoustic Tracking Provides Accurate Descriptors of Home Range Behavior in a Small-Bodied Coastal Fish Species.Fish with chips: tracking reef fish movements to evaluate size and connectivity of Caribbean marine protected areasSeasonal and ontogenetic changes in movement patterns of sixgill sharksThe good, the bad and the ugly of marine reserves for fishery yieldsDesigning marine reserve networks for both conservation and fisheries management.Relative impacts of adult movement, larval dispersal and harvester movement on the effectiveness of reserve networks.Changes in fish assemblages following the establishment of a network of no-take marine reserves and partially-protected areas.Beyond connectivity: how empirical methods can quantify population persistence to improve marine protected-area design.Home-range allometry in coral reef fishes: comparison to other vertebrates, methodological issues and management implications.Incorporating seascape connectivity in conservation prioritisation.Collaborative assessment of California spiny lobster population and fishery responses to a marine reserve network.Decision analysis for designing marine protected areas for multiple species with uncertain fishery status.Modeling the impacts of two age-related portfolio effects on recruitment variability with and without a marine reserve.Differential movement and movement bias models for marine protected areas.Quantifying the potential for marine reserves or harvest reductions to buffer temporal mismatches caused by climate changeLinking models with monitoring data for assessing performance of no-take marine reservesHome range of European lobster (Homarus gammarus) in a marine reserve: implications for future reserve designLinking Movement Ecology with Wildlife Management and ConservationLinking the biology and ecology of key herbivorous unicornfish to fisheries management in the PacificReserve Sizes Needed to Protect Coral Reef FishesA Genuine Win-Win: Resolving the “Conserve or Catch” Conflict in Marine Reserve Network DesignLinking basin-scale connectivity, oceanography and population dynamics for the conservation and management of marine ecosystems
P2860
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P2860
Marine reserve networks for species that move within a home range.
description
2009 nî lūn-bûn
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2009年の論文
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2009年学术文章
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2009年学术文章
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2009年学术文章
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2009年学术文章
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2009年学术文章
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2009年学术文章
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2009年學術文章
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name
Marine reserve networks for species that move within a home range.
@en
Marine reserve networks for species that move within a home range.
@nl
type
label
Marine reserve networks for species that move within a home range.
@en
Marine reserve networks for species that move within a home range.
@nl
prefLabel
Marine reserve networks for species that move within a home range.
@en
Marine reserve networks for species that move within a home range.
@nl
P2093
P2860
P356
P1476
Marine reserve networks for species that move within a home range.
@en
P2093
Elizabeth A Moffitt
Louis W Botsford
Michael R O'Farrell
P2860
P304
P356
10.1890/08-1101.1
P577
2009-10-01T00:00:00Z