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Elliott L Hazen

Dados Biográficos

ID1574420
NOMEElliott L Hazen
PRENOMESElliott L
SOBRENOMEHazen
ASSINATURAHAZEN E L
AFILIAÇÕESNOAA National Marine Fisheries Service Southwest Fisheries Science Center
ORCID0000-0002-0412-7178
VERIFICADOSim
TOTAL DE OBRAS11
TOTAL DE CITAÇÕES4
TOTAL COMO AUTOR11
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO1935
ANO MAIS RECENTE DE PUBLICAÇÃO2024
ÍNDICE H1
  • Harnessing AI to map global fishing vessel activity

    Open Access•Holmes Welch, Robert T Ames et al.•ARTICLE•One Earth•2024

    Describing the sheer scale of the global fishing industry necessitates a lot of zeros: 4,900,000 fishing vessels, 40,000,000 million workers, and an annual production of 80,000,000 tonnes of seafood valued at $141,000,000,000. Effective management of the fishing industry requires crunching these big data—while the human mind balks at such a task, the artificial mind does not. Artificial intelligence (AI) is a family of systems that allow computer…

  • Linking knowledge and action for climate-ready fisheries

    Open Access•Julia G Mason, Sarah J Weisberg et al.•ARTICLE•Marine Policy•2023

  • Local ecological knowledge and perception of the causes, impacts and effects of Sargassum massive influxes

    Open Access•Judith Rosellon-Druker, Judith Rosellon‐Druker et al.•ARTICLE•Ecosystems and People•2023

    Coastal communities of the Caribbean Sea and Gulf of Mexico have been affected by atypical influxes of pelagic macroalgae (Sargassum genus) since 2011, entailing ecological, economic and social impacts in need of characterization. We compiled and documented local ecological knowledge (LEK) and perceptions across diverse stakeholder groups from coastal communities in Mexico (Quintana Roo) (n=50 participants) and the United States (Florida) (n=36 p…

  • Clustering of disaggregated fisheries data reveals functional longline fleets across the Pacific

    Open Access•Timothy H Frawley, Barbara A Muhling et al.•ARTICLE•One Earth•2022

    Ensuring the long-term sustainability of tuna, billfish, and other transboundary fisheries resources begins with data on the status of stocks, as well as information concerning who catches what fish, when, where, and how. Despite recent improvements in fisheries monitoring and surveillance, such dynamics remain poorly understood across the high seas. Here we delineate and describe pelagic longline activity in the Pacific Ocean using a framework t…

  • Enhanced monitoring of life in the sea is a critical component of conservation management and sustainable economic growth

    Open Access•Maurice G Estes, Clarissa Anderson et al.•ARTICLE•Marine Policy•2021

    Marine biodiversity is a fundamental characteristic of our planet that depends on and influences climate, water quality, and many ocean state variables. It is also at the core of ecosystem services that can make or break economic development in any region. Our purpose is to highlight the need for marine biological observations to inform science and conservation management and to support the blue economy. We provide ten recommendations, applicable…

  • Dynamic strategies offer potential to reduce lethal ship collisions with large whales under changing climate conditions

    Open Access•Arjun Hausner, Jameal F Samhouri et al.•ARTICLE•Marine Policy•2021

  • Beyond static spatial management

    Open Access•Guillermo Ortuño Crespo, Joanna Mossop et al.•ARTICLE•Marine Policy•2020

    Natural and human stressors in the high seas act across a wide range of spatial and temporal scales. These include direct interaction such as fisheries bycatch or indirect interaction like warming oceans and plastic ingestion. Area-based management tools (ABMTs), such as marine protected areas and time-area closures, are a widely accepted and a broadly successful form of management used to mitigate localized human impacts on marine species and ec…

  • Implementing ecosystem considerations in forage fisheries

    Open Access•Julie A Thayer, Elliott L Hazen et al.•ARTICLE•Marine Policy•2020

  • Comprehensive bycatch assessment in US fisheries for prioritizing management

    Open Access•Matthew S Savoca, Stephanie Brodie et al.•ARTICLE•Nature Sustainability•2020•Referências: 1

  • Beyond Baselines

    Open Access•Lisa M Campbell, Noella J Gray et al.•ARTICLE•Conservation Ecology•2009•Citada por: 4

    Campbell, L. M., N. J. Gray, E. L. Hazen, and J. M. Shackeroff. 2009. Beyond baselines: rethinking priorities for ocean conservation. Ecology and Society 14(1): 14. https://doi.org/10.5751/ES-02774-140114

  • Rocky Mountain Spotted Fever in New York State Outside of New York City

    E R Maillard, Elliott L Hazen•ARTICLE•American Journal of Public Health…•1935

    Rocky Mountain Spotted Fever in New York State Outside of New York City E. R. Maillard, and E. L. Hazen CopyRight https://doi.org/10.2105/AJPH.25.9.1015 Published Online: August 29, 2011

  • Beyond Baselines

    Open Access•Lisa M Campbell, Noella J Gray et al.•ARTICLE•Conservation Ecology•2009•Citada por: 4

    Campbell, L. M., N. J. Gray, E. L. Hazen, and J. M. Shackeroff. 2009. Beyond baselines: rethinking priorities for ocean conservation. Ecology and Society 14(1): 14. https://doi.org/10.5751/ES-02774-140114

  • Rocky Mountain Spotted Fever in New York State Outside of New York City

    E R Maillard, Elliott L Hazen•ARTICLE•American Journal of Public Health…•1935

    Rocky Mountain Spotted Fever in New York State Outside of New York City E. R. Maillard, and E. L. Hazen CopyRight https://doi.org/10.2105/AJPH.25.9.1015 Published Online: August 29, 2011

  • Beyond Baselines

    Open Access•Lisa M Campbell, Noella J Gray et al.•ARTICLE•Conservation Ecology•2009•Citada por: 4

    Campbell, L. M., N. J. Gray, E. L. Hazen, and J. M. Shackeroff. 2009. Beyond baselines: rethinking priorities for ocean conservation. Ecology and Society 14(1): 14. https://doi.org/10.5751/ES-02774-140114

  • Beyond static spatial management

    Open Access•Guillermo Ortuño Crespo, Joanna Mossop et al.•ARTICLE•Marine Policy•2020

    Natural and human stressors in the high seas act across a wide range of spatial and temporal scales. These include direct interaction such as fisheries bycatch or indirect interaction like warming oceans and plastic ingestion. Area-based management tools (ABMTs), such as marine protected areas and time-area closures, are a widely accepted and a broadly successful form of management used to mitigate localized human impacts on marine species and ec…

  • Implementing ecosystem considerations in forage fisheries

    Open Access•Julie A Thayer, Elliott L Hazen et al.•ARTICLE•Marine Policy•2020

  • Comprehensive bycatch assessment in US fisheries for prioritizing management

    Open Access•Matthew S Savoca, Stephanie Brodie et al.•ARTICLE•Nature Sustainability•2020•Referências: 1

  • Enhanced monitoring of life in the sea is a critical component of conservation management and sustainable economic growth

    Open Access•Maurice G Estes, Clarissa Anderson et al.•ARTICLE•Marine Policy•2021

    Marine biodiversity is a fundamental characteristic of our planet that depends on and influences climate, water quality, and many ocean state variables. It is also at the core of ecosystem services that can make or break economic development in any region. Our purpose is to highlight the need for marine biological observations to inform science and conservation management and to support the blue economy. We provide ten recommendations, applicable…

  • Dynamic strategies offer potential to reduce lethal ship collisions with large whales under changing climate conditions

    Open Access•Arjun Hausner, Jameal F Samhouri et al.•ARTICLE•Marine Policy•2021

  • Clustering of disaggregated fisheries data reveals functional longline fleets across the Pacific

    Open Access•Timothy H Frawley, Barbara A Muhling et al.•ARTICLE•One Earth•2022

    Ensuring the long-term sustainability of tuna, billfish, and other transboundary fisheries resources begins with data on the status of stocks, as well as information concerning who catches what fish, when, where, and how. Despite recent improvements in fisheries monitoring and surveillance, such dynamics remain poorly understood across the high seas. Here we delineate and describe pelagic longline activity in the Pacific Ocean using a framework t…

  • Linking knowledge and action for climate-ready fisheries

    Open Access•Julia G Mason, Sarah J Weisberg et al.•ARTICLE•Marine Policy•2023

  • Local ecological knowledge and perception of the causes, impacts and effects of Sargassum massive influxes

    Open Access•Judith Rosellon-Druker, Judith Rosellon‐Druker et al.•ARTICLE•Ecosystems and People•2023

    Coastal communities of the Caribbean Sea and Gulf of Mexico have been affected by atypical influxes of pelagic macroalgae (Sargassum genus) since 2011, entailing ecological, economic and social impacts in need of characterization. We compiled and documented local ecological knowledge (LEK) and perceptions across diverse stakeholder groups from coastal communities in Mexico (Quintana Roo) (n=50 participants) and the United States (Florida) (n=36 p…

  • Harnessing AI to map global fishing vessel activity

    Open Access•Holmes Welch, Robert T Ames et al.•ARTICLE•One Earth•2024

    Describing the sheer scale of the global fishing industry necessitates a lot of zeros: 4,900,000 fishing vessels, 40,000,000 million workers, and an annual production of 80,000,000 tonnes of seafood valued at $141,000,000,000. Effective management of the fishing industry requires crunching these big data—while the human mind balks at such a task, the artificial mind does not. Artificial intelligence (AI) is a family of systems that allow computer…

Ecology (8 obras) · Geography (8 obras) · Biology (7 obras) · Environmental resource management (7 obras) · Environmental Science (7 obras) · Marine and fisheries research (7 obras) · Coral and Marine Ecosystems Studies (6 obras) · Fishery (6 obras) · Coastal and Marine Management (5 obras) · Fishing (5 obras)

Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae