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Nicolai Panikov

Dados Biográficos

ID6015722
NOMENicolai Panikov
PRENOMESNicolai
SOBRENOMEPanikov
ASSINATURAPANIKOV N
AFILIAÇÕESStevens Institute of Technology
VERIFICADONão
TOTAL DE OBRAS18
TOTAL DE CITAÇÕES81
TOTAL COMO AUTOR18
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2004
ANO MAIS RECENTE DE PUBLICAÇÃO2004
ÍNDICE H6
  • Uncertainties and Recommendations

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 4

    An assessment of the impacts of changes in climate and UV-B radiation on Arctic terrestrial ecosystems, made within the Arctic Climate Impacts Assessment (ACIA), highlighted the profound implications of projected warming in particular for future ecosystem services, biodiversity and feedbacks to climate. However, although our current understanding of ecological processes and changes driven by climate and UV-B is strong in some geographical areas a…

  • Past Changes in Arctic Terrestrial Ecosystems, Climate and UV Radiation

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 64

    At the last glacial maximum, vast ice sheets covered many continental areas. The beds of some shallow seas were exposed thereby connecting previously separated landmasses. Although some areas were ice-free and supported a flora and fauna, mean annual temperatures were 10–13°C colder than during the Holocene. Within a few millennia of the glacial maximum, deglaciation started, characterized by a series of climatic fluctuations between about 18 000…

  • Rationale, Concepts and Approach to the Assessment

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 7

  • Uncertainties and Recommendations

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 20

    An assessment of the impacts of changes in climate and UV-B radiation on Arctic terrestrial ecosystems, made within the Arctic Climate Impacts Assessment (ACIA), highlighted the profound implications of projected warming in particular for future ecosystem services, biodiversity and feedbacks to climate. However, although our current understanding of ecological processes and changes driven by climate and UV-B is strong in some geographical areas a…

  • Synthesis of Effects in Four Arctic Subregions

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 5

    An assessment of impacts on Arctic terrestrial ecosystems has emphasized geographical variability in responses of species and ecosystems to environmental change. This variability is usually associated with north-south gradients in climate, biodiversity, vegetation zones, and ecosystem structure and function. It is clear, however, that significant east-west variability in environment, ecosystem structure and function, environmental history, and re…

  • Responses to Projected Changes in Climate and UV-B at the Species Level

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 149

    Environmental manipulation experiments showed that species respond individualistically to each environmental-change variable. The greatest responses of plants were generally to nutrient, particularly nitrogen, addition. Summer warming experiments showed that woody plant responses were dominant and that mosses and lichens became less abundant. Responses to warming were controlled by moisture availability and snow cover. Many invertebrates increase…

  • Effects on the Structure of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 9

    Historically, the function of Arctic ecosystems in terms of cycles of nutrients and carbon has led to low levels of primary production and exchanges of energy, water and greenhouse gases have led to low local and regional cooling. Sequestration of carbon from atmospheric CO2, in extensive, cold organic soils and the high albedo from low, snow-covered vegetation have had impacts on regional climate. However, many aspects of the functioning of Arct…

  • Responses to Projected Changes in Climate and UV-B at the Species Level

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 7

    Environmental manipulation experiments showed that species respond individualistically to each environmental-change variable. The greatest responses of plants were generally to nutrient, particularly nitrogen, addition. Summer warming experiments showed that woody plant responses were dominant and that mosses and lichens became less abundant. Responses to warming were controlled by moisture availability and snow cover. Many invertebrates increase…

  • Past Changes in Arctic Terrestrial Ecosystems, Climate and UV Radiation

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 6

    At the last glacial maximum, vast ice sheets covered many continental areas. The beds of some shallow seas were exposed thereby connecting previously separated landmasses. Although some areas were ice-free and supported a flora and fauna, mean annual temperatures were 10-13 degrees C colder than during the Holocene. Within a few millennia of the glacial maximum, deglaciation started, characterized by a series of climatic fluctuations between abou…

  • Key Findings and Extended Summaries

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 9

  • Effects of Changes in Climate on Landscape and Regional Processes, and Feedbacks to the Climate System

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 88

    Biological and physical processes in the Arctic system operate at various temporal and spatial scales to impact large-scale feedbacks and interactions with the earth system. There are four main potential feedback mechanisms between the impacts of climate change on the Arctic and the global climate system: albedo, greenhouse gas emissions or uptake by ecosystems, greenhouse gas emissions from methane hydrates, and increased freshwater fluxes that …

  • Rationale, Concepts and Approach to the Assessment

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 27

    A general recognition that the Arctic will amplify global climate warming, that UV-B radiation may continue to increase there because of possible delays in the repair of stratospheric ozone, and that the Arctic environment and its peoples are likely to be particularly susceptible to such environmental changes stimulated an international assessment of climate change impacts. The Arctic Climate Impacts Assessment (ACIA) is a four-year study, culmin…

  • Effects on the Structure of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 110

    Species individualistic responses to warming and increased UV-B radiation are moderated by the responses of neighbors within communities, and trophic interactions within ecosystems. All of these responses lead to changes in ecosystem structure. Experimental manipulation of environmental factors expected to change at high latitudes showed that summer warming of tundra vegetation has generally led to smaller changes than fertilizer addition. Some o…

  • Effects of Changes in Climate on Landscape and Regional Processes, and Feedbacks to the Climate System

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 12

    Biological and physical processes in the Arctic system operate at various temporal and spatial scales to impact large-scale feedbacks and interactions with the earth system. There are four main potential feedback mechanisms between the impacts of climate change on the Arctic and the global climate system: albedo, greenhouse gas emissions or uptake by ecosystems, greenhouse gas emissions from methane hydrates, and increased freshwater fluxes that …

  • Biodiversity, Distributions and Adaptations of Arctic Species in the Context of Environmental Change

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 19

    The individual of a species is the basic unit which responds to climate and UV-B changes, and it responds over a wide range of time scales. The diversity of animal, plant and microbial species appears to be low in the Arctic, and decreases from the boreal forests to the polar deserts of the extreme North but primitive species are particularly abundant. This latitudinal decline is associated with an increase in super-dominant species that occupy a…

  • Key Findings and Extended Summaries

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 1

    TEST 02 - Elsevier's Scopus, the largest abstract and citation database of peer-reviewed literature. Search and access research from the science, technology, medicine, social sciences and arts and humanities fields

  • Effects on the Function of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 11

    Historically, the function of Arctic ecosystems in terms of cycles of nutrients and carbon has led to low levels of primary production and exchanges of energy, water and greenhouse gases have led to low local and regional cooling. Sequestration of carbon from atmospheric CO2, in extensive, cold organic soils and the high albedo from low, snow-covered vegetation have had impacts on regional climate. However, many aspects of the functioning of Arct…

  • Synthesis of Effects in Four Arctic Subregions

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 12

    An assessment of impacts on Arctic terrestrial ecosystems has emphasized geographical variability in responses of species and ecosystems to environmental change. This variability is usually associated with north-south gradients in climate, biodiversity, vegetation zones, and ecosystem structure and function. It is clear, however, that significant east-west variability in environment, ecosystem structure and function, environmental history, and re…

  • Biodiversity, Distributions and Adaptations of Arctic Species in the Context of Environmental Change

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 19

    The individual of a species is the basic unit which responds to climate and UV-B changes, and it responds over a wide range of time scales. The diversity of animal, plant and microbial species appears to be low in the Arctic, and decreases from the boreal forests to the polar deserts of the extreme North but primitive species are particularly abundant. This latitudinal decline is associated with an increase in super-dominant species that occupy a…

  • Effects of Changes in Climate on Landscape and Regional Processes, and Feedbacks to the Climate System

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 12

    Biological and physical processes in the Arctic system operate at various temporal and spatial scales to impact large-scale feedbacks and interactions with the earth system. There are four main potential feedback mechanisms between the impacts of climate change on the Arctic and the global climate system: albedo, greenhouse gas emissions or uptake by ecosystems, greenhouse gas emissions from methane hydrates, and increased freshwater fluxes that …

  • Effects on the Function of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 11

    Historically, the function of Arctic ecosystems in terms of cycles of nutrients and carbon has led to low levels of primary production and exchanges of energy, water and greenhouse gases have led to low local and regional cooling. Sequestration of carbon from atmospheric CO2, in extensive, cold organic soils and the high albedo from low, snow-covered vegetation have had impacts on regional climate. However, many aspects of the functioning of Arct…

  • Effects on the Structure of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 9

    Historically, the function of Arctic ecosystems in terms of cycles of nutrients and carbon has led to low levels of primary production and exchanges of energy, water and greenhouse gases have led to low local and regional cooling. Sequestration of carbon from atmospheric CO2, in extensive, cold organic soils and the high albedo from low, snow-covered vegetation have had impacts on regional climate. However, many aspects of the functioning of Arct…

  • Rationale, Concepts and Approach to the Assessment

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 7

  • Responses to Projected Changes in Climate and UV-B at the Species Level

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 7

    Environmental manipulation experiments showed that species respond individualistically to each environmental-change variable. The greatest responses of plants were generally to nutrient, particularly nitrogen, addition. Summer warming experiments showed that woody plant responses were dominant and that mosses and lichens became less abundant. Responses to warming were controlled by moisture availability and snow cover. Many invertebrates increase…

  • Past Changes in Arctic Terrestrial Ecosystems, Climate and UV Radiation

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 6

    At the last glacial maximum, vast ice sheets covered many continental areas. The beds of some shallow seas were exposed thereby connecting previously separated landmasses. Although some areas were ice-free and supported a flora and fauna, mean annual temperatures were 10-13 degrees C colder than during the Holocene. Within a few millennia of the glacial maximum, deglaciation started, characterized by a series of climatic fluctuations between abou…

  • Synthesis of Effects in Four Arctic Subregions

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 5

    An assessment of impacts on Arctic terrestrial ecosystems has emphasized geographical variability in responses of species and ecosystems to environmental change. This variability is usually associated with north-south gradients in climate, biodiversity, vegetation zones, and ecosystem structure and function. It is clear, however, that significant east-west variability in environment, ecosystem structure and function, environmental history, and re…

  • Uncertainties and Recommendations

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 4

    An assessment of the impacts of changes in climate and UV-B radiation on Arctic terrestrial ecosystems, made within the Arctic Climate Impacts Assessment (ACIA), highlighted the profound implications of projected warming in particular for future ecosystem services, biodiversity and feedbacks to climate. However, although our current understanding of ecological processes and changes driven by climate and UV-B is strong in some geographical areas a…

  • Key Findings and Extended Summaries

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 1

    TEST 02 - Elsevier's Scopus, the largest abstract and citation database of peer-reviewed literature. Search and access research from the science, technology, medicine, social sciences and arts and humanities fields

  • Uncertainties and Recommendations

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 4

    An assessment of the impacts of changes in climate and UV-B radiation on Arctic terrestrial ecosystems, made within the Arctic Climate Impacts Assessment (ACIA), highlighted the profound implications of projected warming in particular for future ecosystem services, biodiversity and feedbacks to climate. However, although our current understanding of ecological processes and changes driven by climate and UV-B is strong in some geographical areas a…

  • Past Changes in Arctic Terrestrial Ecosystems, Climate and UV Radiation

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 64

    At the last glacial maximum, vast ice sheets covered many continental areas. The beds of some shallow seas were exposed thereby connecting previously separated landmasses. Although some areas were ice-free and supported a flora and fauna, mean annual temperatures were 10–13°C colder than during the Holocene. Within a few millennia of the glacial maximum, deglaciation started, characterized by a series of climatic fluctuations between about 18 000…

  • Rationale, Concepts and Approach to the Assessment

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 7

  • Uncertainties and Recommendations

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 20

    An assessment of the impacts of changes in climate and UV-B radiation on Arctic terrestrial ecosystems, made within the Arctic Climate Impacts Assessment (ACIA), highlighted the profound implications of projected warming in particular for future ecosystem services, biodiversity and feedbacks to climate. However, although our current understanding of ecological processes and changes driven by climate and UV-B is strong in some geographical areas a…

  • Synthesis of Effects in Four Arctic Subregions

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 5

    An assessment of impacts on Arctic terrestrial ecosystems has emphasized geographical variability in responses of species and ecosystems to environmental change. This variability is usually associated with north-south gradients in climate, biodiversity, vegetation zones, and ecosystem structure and function. It is clear, however, that significant east-west variability in environment, ecosystem structure and function, environmental history, and re…

  • Responses to Projected Changes in Climate and UV-B at the Species Level

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 149

    Environmental manipulation experiments showed that species respond individualistically to each environmental-change variable. The greatest responses of plants were generally to nutrient, particularly nitrogen, addition. Summer warming experiments showed that woody plant responses were dominant and that mosses and lichens became less abundant. Responses to warming were controlled by moisture availability and snow cover. Many invertebrates increase…

  • Effects on the Structure of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 9

    Historically, the function of Arctic ecosystems in terms of cycles of nutrients and carbon has led to low levels of primary production and exchanges of energy, water and greenhouse gases have led to low local and regional cooling. Sequestration of carbon from atmospheric CO2, in extensive, cold organic soils and the high albedo from low, snow-covered vegetation have had impacts on regional climate. However, many aspects of the functioning of Arct…

  • Responses to Projected Changes in Climate and UV-B at the Species Level

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 7

    Environmental manipulation experiments showed that species respond individualistically to each environmental-change variable. The greatest responses of plants were generally to nutrient, particularly nitrogen, addition. Summer warming experiments showed that woody plant responses were dominant and that mosses and lichens became less abundant. Responses to warming were controlled by moisture availability and snow cover. Many invertebrates increase…

  • Past Changes in Arctic Terrestrial Ecosystems, Climate and UV Radiation

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 6

    At the last glacial maximum, vast ice sheets covered many continental areas. The beds of some shallow seas were exposed thereby connecting previously separated landmasses. Although some areas were ice-free and supported a flora and fauna, mean annual temperatures were 10-13 degrees C colder than during the Holocene. Within a few millennia of the glacial maximum, deglaciation started, characterized by a series of climatic fluctuations between abou…

  • Key Findings and Extended Summaries

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 9

  • Effects of Changes in Climate on Landscape and Regional Processes, and Feedbacks to the Climate System

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 88

    Biological and physical processes in the Arctic system operate at various temporal and spatial scales to impact large-scale feedbacks and interactions with the earth system. There are four main potential feedback mechanisms between the impacts of climate change on the Arctic and the global climate system: albedo, greenhouse gas emissions or uptake by ecosystems, greenhouse gas emissions from methane hydrates, and increased freshwater fluxes that …

  • Rationale, Concepts and Approach to the Assessment

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 27

    A general recognition that the Arctic will amplify global climate warming, that UV-B radiation may continue to increase there because of possible delays in the repair of stratospheric ozone, and that the Arctic environment and its peoples are likely to be particularly susceptible to such environmental changes stimulated an international assessment of climate change impacts. The Arctic Climate Impacts Assessment (ACIA) is a four-year study, culmin…

  • Effects on the Structure of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 110

    Species individualistic responses to warming and increased UV-B radiation are moderated by the responses of neighbors within communities, and trophic interactions within ecosystems. All of these responses lead to changes in ecosystem structure. Experimental manipulation of environmental factors expected to change at high latitudes showed that summer warming of tundra vegetation has generally led to smaller changes than fertilizer addition. Some o…

  • Effects of Changes in Climate on Landscape and Regional Processes, and Feedbacks to the Climate System

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 12

    Biological and physical processes in the Arctic system operate at various temporal and spatial scales to impact large-scale feedbacks and interactions with the earth system. There are four main potential feedback mechanisms between the impacts of climate change on the Arctic and the global climate system: albedo, greenhouse gas emissions or uptake by ecosystems, greenhouse gas emissions from methane hydrates, and increased freshwater fluxes that …

  • Biodiversity, Distributions and Adaptations of Arctic Species in the Context of Environmental Change

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 19

    The individual of a species is the basic unit which responds to climate and UV-B changes, and it responds over a wide range of time scales. The diversity of animal, plant and microbial species appears to be low in the Arctic, and decreases from the boreal forests to the polar deserts of the extreme North but primitive species are particularly abundant. This latitudinal decline is associated with an increase in super-dominant species that occupy a…

  • Key Findings and Extended Summaries

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 1

    TEST 02 - Elsevier's Scopus, the largest abstract and citation database of peer-reviewed literature. Search and access research from the science, technology, medicine, social sciences and arts and humanities fields

  • Effects on the Function of Arctic Ecosystems in the Short- and Long-term Perspectives

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Citada por: 11

    Historically, the function of Arctic ecosystems in terms of cycles of nutrients and carbon has led to low levels of primary production and exchanges of energy, water and greenhouse gases have led to low local and regional cooling. Sequestration of carbon from atmospheric CO2, in extensive, cold organic soils and the high albedo from low, snow-covered vegetation have had impacts on regional climate. However, many aspects of the functioning of Arct…

  • Synthesis of Effects in Four Arctic Subregions

    Terry V Callaghan, Lars Olof Björn et al.•ARTICLE•AMBIO•2004•Referências: 12

    An assessment of impacts on Arctic terrestrial ecosystems has emphasized geographical variability in responses of species and ecosystems to environmental change. This variability is usually associated with north-south gradients in climate, biodiversity, vegetation zones, and ecosystem structure and function. It is clear, however, that significant east-west variability in environment, ecosystem structure and function, environmental history, and re…

Arctic (15 obras) · Environmental Science (15 obras) · Climate change and permafrost (14 obras) · Ecology (14 obras) · Climate change (11 obras) · Ecosystem (11 obras) · Tundra (11 obras) · Biology (7 obras) · Ecology (7 obras) · Geography (7 obras)

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