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  • Ca2+ release
  • Freshwater
  • Parvalbumin
  • Cham : Springer  (5)
  • American Geophysical Union  (3)
  • Annual Reviews  (2)
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  • 1
    Keywords: Environment ; Environmental management ; Political science ; Wildlife ; Fish ; Marine sciences ; Freshwater ; Environment ; Environmental Management ; Political Science ; Water Policy/Water Governance/Water Management ; Marine & Freshwater Sciences ; Fish & Wildlife Biology & Management
    Description / Table of Contents: Chapter 1. Environmental Governance of the Baltic Sea: Identifying Key Challenges Research Topics and Analytical Approaches. Part 1: Interdisciplinary Case Studies of Environmental Governance --- Chapter 2. Eutrophication and the Ecosystem Approach to Management: A Case Study of Baltic Sea Environmental Governance --- Chapter 3. Fisheries: A Case Study of Baltic Sea Environmental Governance --- Chapter 4. Biological Invasions: a Case Study of Baltic Sea Environmental Governance --- Chapter 5. Governance of Chemicals in the Baltic Sea Region: A Study of Three Generations of Hazardous Substances --- Chapter 6. Oil Spills from Shipping: A Case Study of the Governance of Accidental Hazards and Intentional Pollution in the Baltic Sea --- Part 2: Cross-Case Analysis of Key Environmental Governance Challenges --- Chapter 7. The Ecosystem Approach to Management in Baltic Sea Governance: Towards Increased Reflexivity? --- Chapter 8. Science-Policy Interfaces in Baltic Sea Environmental Governance: Towards Regional Cooperation and Management of Uncertainty? --- Chapter 9. Risk Communication and the Role of the Public: Towards Inclusive Environmental Governance of the Baltic Sea? --- Chapter 10. Seeking Pathways Towards Improved Environmental Governance of the Baltic Sea
    Pages: Online-Ressource (XIX, 253 pages) , 10 illustrations, 3 illustrations in color
    ISBN: 9783319270067
    Language: English
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  • 2
    Keywords: Environment ; Environmental management ; Political science ; Wildlife ; Fish ; Marine sciences ; Freshwater ; Environment ; Environmental Management ; Political Science ; Water Policy/Water Governance/Water Management ; Marine & Freshwater Sciences ; Fish & Wildlife Biology & Management
    Description / Table of Contents: Chapter 1. Environmental Governance of the Baltic Sea: Identifying Key Challenges Research Topics and Analytical Approaches. Part 1: Interdisciplinary Case Studies of Environmental Governance --- Chapter 2. Eutrophication and the Ecosystem Approach to Management: A Case Study of Baltic Sea Environmental Governance --- Chapter 3. Fisheries: A Case Study of Baltic Sea Environmental Governance --- Chapter 4. Biological Invasions: a Case Study of Baltic Sea Environmental Governance --- Chapter 5. Governance of Chemicals in the Baltic Sea Region: A Study of Three Generations of Hazardous Substances --- Chapter 6. Oil Spills from Shipping: A Case Study of the Governance of Accidental Hazards and Intentional Pollution in the Baltic Sea --- Part 2: Cross-Case Analysis of Key Environmental Governance Challenges --- Chapter 7. The Ecosystem Approach to Management in Baltic Sea Governance: Towards Increased Reflexivity? --- Chapter 8. Science-Policy Interfaces in Baltic Sea Environmental Governance: Towards Regional Cooperation and Management of Uncertainty? --- Chapter 9. Risk Communication and the Role of the Public: Towards Inclusive Environmental Governance of the Baltic Sea? --- Chapter 10. Seeking Pathways Towards Improved Environmental Governance of the Baltic Sea
    Pages: Online-Ressource (XIX, 253 pages) , 10 illustrations, 3 illustrations in color
    ISBN: 9783319270067
    Language: English
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  • 3
    Keywords: Environment ; Environmental management ; Business ; Management science ; Law ; Building construction ; Marine sciences ; Freshwater ; Environment ; Marine & Freshwater Sciences ; Offshore Engineering ; Business and Management, general ; Law, general ; Water Policy/Water Governance/Water Management
    Description / Table of Contents: 1. Foreword --- 2. Preface --- 3. Human Marine Resource Use --- 4 Species, Techniques and System Design, Environmental Impact --- 5. Aquaculture Governance --- 6. Aquaculture Economics --- 7. Case Studies --- 8. Synthesis – Pathways Towards Sustainable Ocean Food Production
    Pages: Online-Ressource (XXII, 404 pages) , 128 illustrations, 104 illustrations in color
    ISBN: 9783319511597
    Language: English
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  • 4
    Keywords: Life sciences ; Ecosystems ; Aquatic ecology ; Conservation biology ; Ecology ; Nature conservation ; Marine sciences ; Freshwater ; Life Sciences ; Freshwater & Marine Ecology ; Ecosystems ; Conservation Biology/Ecology ; Nature Conservation ; Marine & Freshwater Sciences
    Description / Table of Contents: Chapter 1. Challenges in Riverine Ecosystem Management --- Part I Human Impacts, Mitigation and Restoration --- Chapter 2. Historic Milestones of Human River Uses and Ecological Impacts --- Chapter 3. River Morphology, Channelization, and Habitat Restoration --- Chapter 4. River Hydrology, Flow Alteration, and Environmental Flow --- Chapter 5. Hydropeaking Impacts and Mitigation --- Chapter 6. Dams: Ecological Impacts and Management --- Chapter 7. Aquatic Habitat Modeling in Running Waters --- Chapter 8. The Role of Sediment and Sediment Dynamics in the Aquatic Environment --- Chapter 9. River Connectivity, Habitat Fragmentation and Related Restoration Meas --- Chapter 10. Phosphorus and Nitrogen Dynamics in Riverine Systems: Human Impacts and Management Options --- Chapter 11. Climate Change Impacts in Riverine Ecosystems --- Chapter 12. Ecotoxicology --- Chapter 13. Land Use --- Chapter 14. Recreational Fisheries – The Need for Sustainability in Fisheries Management of Alpine Rivers --- Part II Management, Methodologies, Governance --- Chapter 15. Restoration in Integrated River Basin Management --- Chapter 16.Adaptive Management of Riverine Socio-ecological Systems --- Chapter 17. Legislative Framework for River Ecosystem Management on International and European Level --- Chapter 18. Ensuring Long-Term Cooperation Over Transboundary Water Resources Through Joint River Basin Management --- Chapter 19. Biomonitoring and Bioassessment --- Chapter 20. Biodiversity and Freshwater Information Systems --- Chapter 21. Ecosystem Services in River Landscapes --- Chapter 22. Public Participation and Environmental Education --- Chapter 23. NGOs in Freshwater Resource Management --- Part III Case Studies --- Chapter 24. Danube Under Pressure: Hydropower Rules the Fish --- Chapter 25. Danube Floodplain Lobau --- Chapter 26. Danube Sturgeons: Past and Future --- Chapter 27. Healthy Fisheries Sustain Society and Ecology in Burkina Faso --- Chapter 28. The Tisza River: Managing a Lowland River in the Carpathian Basin --- Part IV Summary --- Chapter 29. Landmarks, Advances and Future Challenges in Riverine Ecosystem Management
    Pages: Online-Ressource (VII, 571 pages) , 123 illustrations, 82 illustrations in color
    ISBN: 9783319732503
    Language: English
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  • 5
    Keywords: Environment ; Environmental management ; Business ; Management science ; Law ; Building construction ; Marine sciences ; Freshwater ; Environment ; Marine & Freshwater Sciences ; Offshore Engineering ; Business and Management, general ; Law, general ; Water Policy/Water Governance/Water Management
    Description / Table of Contents: 1. Foreword --- 2. Preface --- 3. Human Marine Resource Use --- 4 Species, Techniques and System Design, Environmental Impact --- 5. Aquaculture Governance --- 6. Aquaculture Economics --- 7. Case Studies --- 8. Synthesis – Pathways Towards Sustainable Ocean Food Production
    Pages: Online-Ressource (XXII, 404 pages) , 128 illustrations, 104 illustrations in color
    ISBN: 9783319511597
    Language: English
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  • 6
    Publication Date: 2022-05-25
    Description: First published online as a Review in Advance on October 24, 2005. (Some corrections may occur before final publication online and in print)
    Description: Author Posting. © Annual Reviews, 2005. This article is posted here by permission of Annual Reviews for personal use, not for redistribution. The definitive version was published in Annual Review of Physiology 68 (2006): 22.1-22.29, doi:10.1146/annurev.physiol.68.040104.105418.
    Description: Superfast muscles of vertebrates power sound production. The fastest, the swimbladder muscle of toadfish, generates mechanical power at frequencies in excess of 200 Hz. To operate at these frequencies, the speed of relaxation has had to increase approximately 50-fold. This increase is accomplished by modifications of three kinetic traits: (a) a fast calcium transient due to extremely high concentration of sarcoplasmic reticulum (SR)-Ca2+ pumps and parvalbumin, (b) fast off-rate of Ca2+ from troponin C due to an alteration in troponin, and (c) fast cross-bridge detachment rate constant (g, 50 times faster than that in rabbit fast-twitch muscle) due to an alteration in myosin. Although these three modifications permit swimbladder muscle to generate mechanical work at high frequencies (where locomotor muscles cannot), it comes with a cost: The high g causes a large reduction in attached force-generating cross-bridges, making the swimbladder incapable of powering low-frequency locomotory movements. Hence the locomotory and sound-producing muscles have mutually exclusive designs.
    Description: This work was made possible by support from NIH grants AR38404 and AR46125 as well as the University of Pennsylvania Research Foundation.
    Keywords: Parvalbumin ; Ca2+ release ; Ca2+ uptake ; Cross-bridges ; Adaptation ; Sound production ; Whitman Center
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: 567086 bytes
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  • 7
    Publication Date: 2022-05-25
    Description: Author Posting. © American Geophysical Union, 2007. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research 112 (2007): G04S54, doi:10.1029/2006JG000353.
    Description: Dramatic changes have been observed in the Arctic over the last century. Many of these involve the storage and cycling of fresh water. On land, precipitation and river discharge, lake abundance and size, glacier area and volume, soil moisture, and a variety of permafrost characteristics have changed. In the ocean, sea ice thickness and areal coverage have decreased and water mass circulation patterns have shifted, changing freshwater pathways and sea ice cover dynamics. Precipitation onto the ocean surface has also changed. Such changes are expected to continue, and perhaps accelerate, in the coming century, enhanced by complex feedbacks between the oceanic, atmospheric, and terrestrial freshwater systems. Change to the arctic freshwater system heralds changes for our global physical and ecological environment as well as human activities in the Arctic. In this paper we review observed changes in the arctic freshwater system over the last century in terrestrial, atmospheric, and oceanic systems.
    Description: The authors gratefully acknowledge the National Science Foundation (NSF) for funding this synthesis work. This paper is principally the work of authors funded under the NSF-funded Freshwater Integration (FWI) study.
    Keywords: Arctic ; Freshwater ; System ; Changes ; Impacts
    Repository Name: Woods Hole Open Access Server
    Type: Article
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  • 8
    Publication Date: 2022-10-26
    Description: Author Posting. © American Geophysical Union, 2019. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research-Oceans 124(7), (2019): 4618-4630, doi: 10.1029/2019JC014940.
    Description: The Arctic Ocean mixed layer interacts with the ice cover above and warmer, nutrient‐rich waters below. Ice‐Tethered Profiler observations in the Canada Basin of the Arctic Ocean over 2006–2017 are used to investigate changes in mixed layer properties. In contrast to decades of shoaling since at least the 1980s, the mixed layer deepened by 9 m from 2006–2012 to 2013–2017. Deepening resulted from an increase in mixed layer salinity that also weakened stratification at the base of the mixed layer. Vertical mixing alone can explain less than half of the observed change in mixed layer salinity, and so the observed increase in salinity is inferred to result from changes in freshwater accumulation via changes to ice‐ocean circulation or ice melt/growth and river runoff. Even though salinity increased, the shallowest density surfaces deepened by 5 m on average suggesting that Ekman pumping over this time period remained downward. A deeper mixed layer with weaker stratification has implications for the accessibility of heat and nutrients stored in the upper halocline. The extent to which the mixed layer will continue to deepen appears to depend primarily on the complex set of processes influencing freshwater accumulation.
    Description: We gratefully acknowledge J. Toole for helpful conversations. S. Cole was supported by the National Science Foundation under grant PLR‐1602926 and J. Stadler by the Woods Hole Oceanographic Institution Summer Student Fellowship program. Profile data are available via the Ice‐Tethered Profiler program website: http://whoi.edu/itp. SSM/I ice concentration data were downloaded from the National Snow and Ice Data Center.
    Description: 2019-12-22
    Keywords: Arctic Ocean ; Mixed layer ; Freshwater
    Repository Name: Woods Hole Open Access Server
    Type: Article
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  • 9
    Publication Date: 2022-10-21
    Description: © The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Slater, D., Carroll, D., Oliver, H., Hopwood, M., Straneo, F., Wood, M., Willis, J., & Morlighem, M. Characteristic depths, fluxes and timescales for Greenland’s tidewater glacier fjords from subglacial discharge‐driven upwelling during summer. Geophysical Research Letters, 49(10),(2022): e2021GL097081, https://doi.org/10.1029/2021gl097081.
    Description: Greenland's glacial fjords are a key bottleneck in the earth system, regulating exchange of heat, freshwater and nutrients between the ice sheet and ocean and hosting societally important fisheries. We combine recent bathymetric, atmospheric, and oceanographic data with a buoyant plume model to show that summer subglacial discharge from 136 tidewater glaciers, amounting to 0.02 Sv of freshwater, drives 0.6–1.6 Sv of upwelling. Bathymetric analysis suggests that this is sufficient to renew most major fjords within a single summer, and that these fjords provide a path to the continental shelf that is deeper than 200 m for two-thirds of the glaciers. Our study provides a first pan-Greenland inventory of tidewater glacier fjords and quantifies regional and ice sheet-wide upwelling fluxes. This analysis provides important context for site-specific studies and is a step toward implementing fjord-scale heat, freshwater and nutrient fluxes in large-scale ice sheet and climate models.
    Description: DAS acknowledges support from NERC Independent Research Fellowship NE/T011920/1. DAS and FS acknowledge support from NSF award 2020547. HO acknowledges support from a WHOI Postdoctoral Scholar award. MW and JKW performed this work at the Jet Propulsion Laboratory, California Institute of Technology, under contract with the National Aeronautics and Space Administration.
    Keywords: Greenland Ice Sheet ; Fjord ; Subglacial discharge ; Plume ; Tidewater glacier ; Freshwater
    Repository Name: Woods Hole Open Access Server
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  • 10
    Publication Date: 2023-02-28
    Description: © The Author(s), 2023. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Timmermans, M.-L., & Toole, J. The Arctic Ocean’s Beaufort Gyre. Annual Review of Marine Science, 15(1), (2023): 223-248, https://doi.org/10.1146/annurev-marine-032122-012034.
    Description: The Arctic Ocean's Beaufort Gyre is a dominant feature of the Arctic system, a prominent indicator of climate change, and possibly a control factor for high-latitude climate. The state of knowledge of the wind-driven Beaufort Gyre is reviewed here, including its forcing, relationship to sea-ice cover, source waters, circulation, and energetics. Recent decades have seen pronounced change in all elements of the Beaufort Gyre system. Sea-ice losses have accompanied an intensification of the gyre circulation and increasing heat and freshwater content. Present understanding of these changes is evaluated, and time series of heat and freshwater content are updated to include the most recent observations.
    Description: Support was provided by the National Science Foundation Office of Polar Programs and the Office of Naval Research.
    Keywords: Arctic Ocean ; Beaufort Gyre ; Circulation ; Sea ice ; Freshwater ; Ocean heat content
    Repository Name: Woods Hole Open Access Server
    Type: Article
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