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  • 1
    Online Resource
    Online Resource
    Berlin, Heidelberg :Springer Berlin / Heidelberg,
    Keywords: Reindeer herding -- Environmental aspects -- Europe, Northern. ; Electronic books.
    Type of Medium: Online Resource
    Pages: 1 online resource (420 pages)
    Edition: 1st ed.
    ISBN: 9783540313922
    Series Statement: Ecological Studies ; v.184
    DDC: 636.294
    Language: English
    Note: Intro -- CONTENTS -- Prologue -- Part I. Herders and Reindeer: The Cultural and Socio-economic Dynamics of Human-Animal Relations -- Preface -- The Reindeer: A Brief Natural History -- References -- 1 The Challenges of Modernity for Reindeer Management in Northernmost Europe -- 1.1 Introduction: The Research Setting -- 1.2 Semantics and Book Structure -- 1.3 Research Problems, Questions, Regions and Sites -- 1.4 Issues and Concerns -- 1.5 Challenges in Modern Reindeer Management -- 1.6 Conclusions: Outlook to Resolutions to Conflicts in Reindeer Management -- References -- 2 Dynamics in Human-Reindeer Relations: Reflections on Prehistoric, Historic and Contemporary Practices in Northernmost Europe -- 2.1 Introduction: People and Reindeer in Northern Environments -- 2.2 Remarks on Prehistoric and Early Historic Dimensions of Human-Reindeer Relations -- 2.3 The Emergence of Sámi Practices in Reindeer Nomadism and Large-Scale Herding -- 2.4 Sámi Reindeer Herding in Crisis: Reflections on Practices in Sápmi, Finland -- 2.5 Human-Reindeer Relationships in the Post-Soviet Context: Kola Peninsula (Northwest Russia) -- 2.6 Conclusion: The Future of Human-Reindeer Relations and its Practices -- References -- 3 Development of Participatory Institutions for Reindeer Management in Finland: A Diagnosis of Deliberation, Knowledge Integration and Sustainability -- 3.1 Introduction -- 3.2 Knowledge Integration: The Path from an Idea to a Policy Recommendation -- 3.2.1 Modes of Networking -- 3.2.2 Pioneer Networking -- 3.2.3 Translational Networking -- 3.2.4 Modular Networking -- 3.2.5 The Challenges of Knowledge Networking -- 3.3 Building on Cognitive Potential: Knowledge Networking as an Emergent Institution for Sustainability -- 3.4 Conclusion -- References -- 4 Comparison of Indigennus and Scientific Perceptions of Reindeer Management. , 4.1 Introduction: Research Questions, Approach, and Material -- 4.2 Theoretical Background -- 4.3 The Environmental Management System and its Recognition of Tasks -- 4.4 Major Challenges in Management -- 4.5 Monitoring vs. Observing for Practical Purposes: Contrasting Discourses -- 4.6 The Integrative Challenges of Indigenous and Scientific Conceptions -- 4.7 Conclusions: Needed Dialogue Between Indigenous and Scientific Perceptions -- References -- 5 The Challenges and Dilemmas of Concession Reindeer Management in Sweden -- 5.1 Introduction -- 5.2 The Unexpected Field -- 5.3 The Reindeer System in Sweden -- 5.4 Early Legislation and Regulation -- 5.5 Current Legislation and Regulation -- 5.5.1 The Unique Tornedalen Case -- 5.5.2 Concession Reindeer Herding in Tornedalen Today -- 5.5.3 Distribution of Power -- 5.5.4 Concession for What? -- 5.6 A Small Scale System of Coexistence? -- 5.6.1 Winter Pasture Activities -- 5.6.2 Spring Migration -- 5.6.3 Summer Pasture and Calf Marking -- 5.7 Old System, New Challenges: The Future of the Concession System -- 5.8 Conclusions: … but Some Conflicts Exist … -- References -- 6 Changes in Property Regimes and Reindeer Herding Management in Post-Soviet Herding Collectives: The Case of the Municipality of Lovozero (Murmansk Region, Northwest Russia) -- 6.1 Introduction: The Setting -- 6.2 Brief Historical Survey of Land Reforms -- 6.2.1 "State Peasants" -- 6.2.2 Kolkhoz and Sovkhoz Building -- 6.2.3 Agrarian Reforms: Work History vs. Restitution -- 6.2.4 Herding Specifics -- 6.3 Coping Strategies -- 6.3.1 Agrarian Reforms as Power Tools -- 6.3.2 The "Tundra" Collective of Lovozero -- 6.3.3 Land Issues -- 6.3.4 SKhPK Structure -- 6.3.5 Administrative Management -- 6.3.6 Private Reindeer (lichnye olen'i) -- 6.4 Conclusions: An Apocalyptic Future for Reindeer Management? -- References. , Part II. Reindeer Herding - Effects on Soils, Soil Biota and Vegetation -- Preface -- References -- 7 Defining the Quality of Reindeer Pastures: The Perspectives of Sámi Reindeer Herders -- 7.1 Introduction -- 7.2 Reindeer Herding -- 7.3 Theoretical background -- 7.4 Study Sites -- 7.4.1 Näkkälä Reindeer Herding District -- 7.4.2 Sirkas Sámi Village -- 7.5 Methods -- 7.6 Results -- 7.6.1 Factors Affecting the Quality of the Pastures -- 7.6.1.1 Biological -- 7.6.1.2 Geographical Factors -- 7.6.1.3 Climatic Factors -- 7.6.1.4 Socioeconomic Factors -- 7.6.2 Management and Economic Questions -- 7.6.3 Interactions Among the Different Factors -- 7.7 Scientific Knowledge and Practitioners' Knowledge -- 7.8 Discussion and Conclusions -- References -- 8 Very High Resolution Remote Sensing Data in Reindeer Pasture Inventory in Northern Fennoscandia -- 8.1 Introduction -- 8.1.1 Aims of the Research -- 8.2 Research Area -- 8.3 Material -- 8.3.1 Field Data -- 8.3.2 Remote Sensing and GIS Data -- 8.4 Methods -- 8.4.1 Lichens as Indicators of Grazing and Trampling Intensities -- 8.4.2 Digital Image Processing and Accuracy Assessment -- 8.5 Results -- 8.5.1 Classification of Reindeer Pasture Types -- 8.5.1.1 Winter Pastures -- 8.5.1.2 Summer Pastures -- 8.5.1.3 Other Classes -- 8.5.2 Accuracy Assessment -- 8.5.3 Reindeer Lichen Biomass on Winter Pasture Types -- 8.6 Discussion -- 8.6.1 IKONOS-2 Image Classification and Accuracy -- 8.6.2 Grazing and Trampling Intensities in the Jauristunturit -- 8.6.3 Very High Resolution Remote Sensing Data in Reindeer Pasture Inventory -- 8.7 Conclusions -- References -- 9 Vegetation: Structure, Cover and Biomass of Subarctic Tundra Wetlands Used as Summer Pastures -- 9.1 Introduction -- 9.2 Study Site and Methods -- 9.2.1 Plant composition -- 9.2.2 Biomass -- 9.2.3 Data analysis -- 9.3 Results -- 9.4 Discussion -- References. , 10 The Chemical Response of Reindeer Summer Pasture Plants in a Subarctic Peatland to Ultraviolet (UV) Radiation -- 10.1 Introduction -- 10.2 Materials and Methods -- 10.2.1 Study Site -- 10.2.2 UV Filtration Experiment -- 10.2.3 Sampling and Analyses -- 10.3 Results -- 10.3.1 Weather and Irradiance Conditions -- 10.3.2 Content of Soluble Phenolics in Different Plant Species -- 10.3.3 Content of Nitrogen and Fibers in Different Plant Species -- 10.3.4 Digestibility of Different Plant Species -- 10.4 Discussion -- 10.5 Conclusions -- References -- 11 Consequences of Grazing on Soil Physical and Mechanical Properties in Forest and Tundra Environments -- 11.1 Introduction -- 11.2 Study Areas and Sampling Sites -- 11.3 Materials and Methods -- 11.3.1 Assessment of Soil Structure and Pore Functioning -- 11.3.2 Assessment of Soil Stability -- 11.3.3 Assessment of Heat and Water Flow -- 11.4 Results -- 11.4.1 Changes in Soil Structure and Conductivity Functions -- 11.4.2 Stress-Strain Relationships of the Investigated Soils -- 11.4.2.1 Stability of Soil Structure -- 11.4.2.2 Soil Deformation Under Cyclic Loading -- 11.4.3 Changes in Macroclimate and Moisture Regime -- 11.4.3.1 Exchange of Heat Between Atmosphere and Pedosphere -- 11.4.3.2 Exchange of Water between Atmosphere and Pedosphere -- 11.5 Discussion -- 11.5.1 Changes in Soil Structure and Functioning as a Result of Mechanical Loading -- 11.5.2 Changes in Soil Thermal Regime as a Result of Changing Lichen Cover -- 11.6 Conclusion -- References -- 12 Changes in Organic Horizon Soil Properties Due to Reindeer Herding and Changing Management -- 12.1 Introduction -- 12.2 Materials and Methods -- 12.2.1 Selection of Study Area -- 12.2.2 The concept of Degradation/Succession Stages -- 12.2.3 Soil Description, Sampling, and Analysis -- 12.2.4 Statistical Analysis -- 12.3 Results -- 12.4 Discussion. , 12.4.1 Quantitative Changes -- 12.4.2 Erosion -- 12.4.3 Microbial Activity -- 12.4.4 Qualitative Changes -- 12.4.5 Pathways of Nutrient Loss -- 12.4.6 Soil Fertility and Pasture Productivity -- 12.5 Conclusions -- References -- 13 Changing Microbial Ecology with Changes in Grazing and its Management -- 13.1 Introduction -- 13.1.1 Effects of Changes in Land Use -- 13.1.2 Soil Habitats in Northern Fennoscandia -- 13.2 Locations, Sampling, and Analytical Methods -- 13.2.1 Areas of Investigation -- 13.2.2 Sampling -- 13.2.3 Analyses -- 13.3 Results -- 13.3.1 Forest Environments (Vuotso Area) -- 13.3.2 Dry Tundra (Jauristunturit Area) -- 13.3.3 Microbial Communities -- 13.4 Discussion -- 13.4.1 Effects of Climate and Soil Conditions on Soil Biota -- 13.4.2 Effects of Grazing on Soil Biota -- 13.4.3 Effects on Microbial Communities -- 13.4.4 Effects on Soil Respiration -- 13.5 Conclusion -- References -- 14 Hygienic Status of Soils and Surface Waters in Reindeer Herding Areas in Northernmost Europe -- 14.1 Introduction -- 14.2 Reindeer as an Animal Reservoir for Pathogens with Zoonotic Potential -- 14.3 Pathogens in Soils -- 14.4 Pathogens in Surface Waters -- 14.5 Materials and Methods -- 14.5.1 Fecal Samples -- 14.5.2 Soil Samples -- 14.5.3 Surface Water Samples -- 14.6 Results -- 14.7 Discussion -- References -- Part III. Integrative Models for Reindeer Management: The Interface Between Social and Natural Sciences -- Preface -- 15 Population Trends of Semi-Domesticated Reindeer in Fennoscandia - Evaluation of Explanations -- 15.1 Introduction -- 15.2 Material and Methods -- 15.3 Synchrony in Population Trends -- 15.4 Explanations of Population Trends -- 15.5 Evaluation of Explanations -- 15.6 Discussion -- References -- 16 Systems Analysis of Finnish Reindeer Management -- 16.1 Introduction -- 16.2 Methods and Data Basis -- 16.3 The Investigation Sites. , 16.4 Modeling and Indicator Derivation.
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  • 2
    Publication Date: 2023-11-06
    Description: These five cores were obtained from a terrestrial permafrost area in northeastern Siberia (U1: March 2019; B3, B2, B1, U3: July 2019) during the Chersky 2019 field campaign. This campaign was part of both the CACOON and the PeCHEc project and was based at the Northeast Science Station in Chersky, Sakha, Russia (RU-LAND-2019/CHERSKIY; 02.07.2019 - 19.07.2019). They were taken from the area of the Pleistocene Park experiment (Zimov, 2005; doi:10.1126/science.1113442) and cover areas of a drained thermokarst lake basin (B) as well as the adjacent Yedoma uplands (U). The cores were drilled in areas of different large herbivore impact intensities (3= intensive; 2= extensive; 1= no animal presence). The data are used in a study exermining the impact of large herbivore presence on permafrost stability, vegetation composition and ground carbon storage. The active layer was sampled excavating profiles with a spade using fixed volume cylinders on the profile wall (250 ccm). The frozen ground was sampled using a SIPRE permafrost auger with a Stihl motor. All samples taken from these cores were analyzed between January 2020 and March 2021 at the facilities of AWI. The samples were analyzed for water/ice content, water isotopes, pH, conductivity, DOC, TC, TN, TOC, δ13C, mass specific magnetic susceptibility, grain size composition and radiocarbon age. Water/ice content was derived from weight differences before and after freeze-drying the samples. Water isotope ratios (δ18O, δ2H, d excess), pH, conductivity and DOC were measured using pore water extracted from the sediment samples using Rhizone samplers. Water isotopes were measured at AWI Potsdam Stable Isotope Laboratory using a Finnigan MAT Delta-S mass spectrometer. DOC was measured at AWI Potsdam Hydrochemistry Laboratory using a Shimadzu TOC-V CPH Total Organic Carbon Analyzer. TC and TN were measured at AWI Potsdam CARLA Laboratory using a vario EL III Element Analyzer. TOC was measured at the same laboratory using a varioMAX C Element Analyzer. δ13C was measured at AWI Potsdam Stable Isotope Laboratory using a Delta V Advantage Isotope Ratio MS supplement equipped with a Flash 2000 Organic Elemental Analyzer. Mass specific magnetic susceptibility was measured using a Bartington MS-2 Magnetic Susceptibility System. Grain size composition was determined using a Malvern Mastersizer 3000 equipped with a Malvern Hydro LV wet-sample dispersion unit. Statistics were calculated for this using Gradistat 8.0. Radiocarbon dating was carried out using the Mini Carbon Dating System (MICADAS) at AWI Bremerhaven.
    Keywords: biogeochemistry; CACOON; Carbon; Changing Arctic Carbon cycle in the cOastal Ocean Near-shore; herbivory; PeCHEc; sediment; Siberian permafrost; terrestrial carbon
    Type: Dataset
    Format: application/zip, 4 datasets
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  • 3
    Publication Date: 2023-11-06
    Description: Radiocarbon dating was carried out using the Mini Carbon Dating System (MICADAS) at AWI Bremerhaven.
    Keywords: Age, 14C AMS, Mini Carbon Dating System (MICADAS); Age, comment; Age, dated; Age, dated standard error; AWI Arctic Land Expedition; B1; B2; B3; biogeochemistry; CACOON; Carbon; CH19-B1; CH19-B2; CH19-B3; CH19-U1; CH19-U3; Changing Arctic Carbon cycle in the cOastal Ocean Near-shore; Cherskiy, Russia; Cherskiy 2019; DEPTH, soil; Event label; Fraction modern carbon; Fraction modern carbon, standard error; herbivory; Laboratory code/label; PeCHEc; PERM; RU-Land_2019_Cherskiy; Sample ID; Sampling permafrost; sediment; Siberian permafrost; terrestrial carbon; U1; U3
    Type: Dataset
    Format: text/tab-separated-values, 106 data points
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  • 4
    Publication Date: 2023-11-06
    Description: TC and TN were measured at AWI Potsdam CARLA Laboratory using a vario EL III Element Analyzer. TOC was measured at the same laboratory using a varioMAX C Element Analyzer. δ13C was measured at AWI Potsdam Stable Isotope Laboratory using a Delta V Advantage Isotope Ratio MS supplement equipped with a Flash 2000 Organic Elemental Analyzer.
    Keywords: AWI Arctic Land Expedition; B1; B2; B3; biogeochemistry; CACOON; Carbon; Carbon, organic, total; Carbon, total; Carbon and Nitrogen and sulfur (CNS) isotope element analyzer, Elementar, Elementar Vario MAX Cube; Carbon and nitrogen and sulfur (CNS) isotope element analyzer, Elementar, Vario EL III; CH19-B1; CH19-B2; CH19-B3; CH19-U1; CH19-U3; Changing Arctic Carbon cycle in the cOastal Ocean Near-shore; Cherskiy, Russia; Cherskiy 2019; DEPTH, soil; Event label; herbivory; Nitrogen, total; PeCHEc; PERM; RU-Land_2019_Cherskiy; Sample ID; Sampling permafrost; sediment; Siberian permafrost; terrestrial carbon; Thermo Scientific Flash 2000-Delta V Plus IRMS; U1; U3; δ13C, total organic carbon, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 400 data points
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  • 5
    Publication Date: 2023-11-06
    Description: Water/ice content was derived from weight differences before and after freeze-drying the samples. Water isotope ratios (δ18O, δ2H, d excess), pH, conductivity and DOC were measured using pore water extracted from the sediment samples using Rhizone samplers. Water isotopes were measured at AWI Potsdam Stable Isotope Laboratory using a Finnigan MAT Delta-S mass spectrometer. DOC was measured at AWI Potsdam Hydrochemistry Laboratory using a Shimadzu TOC-V CPH Total Organic Carbon Analyzer.
    Keywords: AWI Arctic Land Expedition; B1; B2; B3; biogeochemistry; CACOON; Carbon; Carbon, organic, dissolved; CH19-B1; CH19-B2; CH19-B3; CH19-U1; CH19-U3; Changing Arctic Carbon cycle in the cOastal Ocean Near-shore; Cherskiy, Russia; Cherskiy 2019; Conductivity; DEPTH, soil; Deuterium excess; Event label; herbivory; PeCHEc; PERM; pH; Pore water extracted by Rhizone samplers; RU-Land_2019_Cherskiy; Sample, dry mass; Sample ID; Sample mass; Sampling permafrost; sediment; Siberian permafrost; State of permafrost; terrestrial carbon; U1; U3; Water content, wet mass; δ18O, water; δ Deuterium, water
    Type: Dataset
    Format: text/tab-separated-values, 769 data points
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  • 6
    Publication Date: 2023-11-06
    Description: Mass specific magnetic susceptibility was measured using a Bartington MS-2 Magnetic Susceptibility System. Grain size composition was determined using a Malvern Mastersizer 3000 equipped with a Malvern Hydro LV wet-sample dispersion unit. Statistics were calculated for this using Gradistat 8.0.
    Keywords: AWI Arctic Land Expedition; B1; B2; B3; Bartington MS2 magnetic susceptibility meter; biogeochemistry; CACOON; Carbon; CH19-B1; CH19-B2; CH19-B3; CH19-U1; CH19-U3; Changing Arctic Carbon cycle in the cOastal Ocean Near-shore; Cherskiy, Russia; Cherskiy 2019; DEPTH, soil; Event label; Grain size, Mastersizer 3000, Malvern Instrument Inc.; Grain size, mean; herbivory; PeCHEc; PERM; RU-Land_2019_Cherskiy; Sample ID; Sampling permafrost; sediment; Siberian permafrost; Size fraction 〈 0.002 mm, clay; Size fraction 0.063-0.002 mm, silt, mud; Size fraction 2.000-0.063 mm, sand; Susceptibility, specific; terrestrial carbon; U1; U3
    Type: Dataset
    Format: text/tab-separated-values, 538 data points
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  • 7
    Publication Date: 2024-01-24
    Keywords: Abbreviation; Comment; Counts; Coverage; International Polar Year 2007-2008; IPY-4; KH; Kharasavey2a; Method comment; MULT; Multiple investigations; Sample type; Species; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 221 data points
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  • 8
    Publication Date: 2024-01-24
    Keywords: Abbreviation; Comment; Counts; Coverage; International Polar Year 2007-2008; IPY-4; KH; Kharasavey2b; Method comment; MULT; Multiple investigations; Sample type; Species; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 212 data points
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  • 9
    Publication Date: 2024-01-24
    Keywords: DATE/TIME; International Polar Year 2007-2008; IPY-4; MULT; Multiple investigations; Nadym1; ND; Species; Tree, basal area; Tree/shrub biomass, aboveground; Tree height; Trees, diameter at breast height; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 1000 data points
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  • 10
    Publication Date: 2024-01-24
    Keywords: Characteristic; DATE/TIME; Event label; Geology, comment; Herbs height; International Polar Year 2007-2008; IPY-4; KH; Kharasavey1; Kharasavey2a; Kharasavey2b; LA; Laborovaya1; Laborovaya2; Landform; LATITUDE; Layer thickness; Location; LONGITUDE; Moss height; MULT; Multiple investigations; Nadym1; Nadym2; ND; Plant community; Sample ID; Shrub height; Site; Thaw depth of active layer; Topography; Tree height; VaskinyDachi1; VaskinyDachi2; VaskinyDachi3; VD; Yamal Peninsula, northwestern Siberia
    Type: Dataset
    Format: text/tab-separated-values, 1200 data points
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