Literature
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δ15N and δ13C Measurements of Antarctic Peninsula Fauna: Trophic Relationships and Assimilation of Benthic Seaweeds. American Zoologist, 41(1), pp.99 - 112. Available at: https://doi.org/10.1093/icb/41.1.99.
, 2001. Zostera Biotopes (volume I). An overview of dynamics and sensitivity characteristics for conservation management of marine SACs., Scottish Association for Marine Science (UK Marine SACs Project). Available at: http://ukmpa.marinebiodiversity.org/pdf/Detailed_Marine_Communities_Reports/zostera.pdf.
, 1998. Zostera Biotopes (volume I). An overview of dynamics and sensitivity characteristics for conservation management of marine SACs., Scottish Association for Marine Science (UK Marine SACs Project). Available at: http://ukmpa.marinebiodiversity.org/pdf/Detailed_Marine_Communities_Reports/zostera.pdf.
, 1998. Zostera Biotopes (volume I), Scottish Association for Marine Science (UK Marine SACs Project). Available at: http://ukmpa.marinebiodiversity.org/pdf/Detailed_Marine_Communities_Reports/zostera.pdf.
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Working Group on North Atlantic Salmon (WGNAS), Copenhagen, Denmark: International Council for the Exploration of the Sea (ICES).
2019. Workforce Report, 2018, Oil & Gas UK. Available at: https://oilandgasuk.co.uk/wp-content/uploads/2019/08/Workforce-Report-2019.pdf.
, 2018. Wintering Waterbirds Index, Scottish Natural Heritage. Available at: https://www.nature.scot/sites/default/files/2018-09/Scottish%20Biodiversity%20Indicator%20-%20S004%20-%20Abundance%20of%20Wintering%20Waterbirds.pdf.
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Wild Seaweed Harvesting as a Diversification Opportunity for Fishermen, Highlands and Islands Enterprise. Available at: https://pureadmin.uhi.ac.uk/ws/portalfiles/portal/3263673/Burrows2018_1.pdf .
, 2018. Widespread occurrence of endophytic Labyrinthula spp. in northern European eelgrass Zostera marina beds. Marine Ecology Progress Series, 445, pp.109 - 116. Available at: http://www.int-res.com/abstracts/meps/v445/p109-116/.
, 2012. Widespread kelp-derived carbon in pelagic and benthic nearshore fishes suggested by stable isotope analysis. . Estuarine, Coastal and Shelf Science. , 181.
, 2016. Where’s the carbon: exploring the spatial heterogeneity of sedimentary carbon in mid-latitude fjords. Frontiers in Earth Science. Available at: https://www.frontiersin.org/articles/10.3389/feart.2019.00269/full.
, 2019. What is ocean deoxygenation?. In Ocean deoxygenation: everyone’s problem. Ocean deoxygenation: everyone’s problem. Gland, Switzerland: IUCN, pp. 1 - 21. Available at: https://portals.iucn.org/library/sites/library/files/documents/01%20DEOX.pdf.
, 2019. What happens to terrestrial organic matter in the ocean?. Organic Geochemistry, 27(5), pp.195-212. Available at: http://www.sciencedirect.com/science/article/pii/S0146638097000661.
, 1997. Wetland Bird Survey: Survey Methods, Analysis & Interpretation, British Trust for Ornithology. Available at: https://www.bto.org/sites/default/files/webs_methods.pdf.
2017. Wave exposure indices from digital coastlines and the prediction of rocky shore community structure. Marine Ecology Progress Series, 353, pp.1 - 12. Available at: https://www.int-res.com/abstracts/meps/v353/p1-12/.
, 2008. The wave and tidal resource of Scotland. Renewable Energy, 114, pp.3 - 17. Available at: http://www.sciencedirect.com/science/article/pii/S0960148117302082.
, 2017. Waterbirds in the UK 2018/19: The Wetland Bird Survey, BTO/RSPB/JNCC. Available at: https://app.bto.org/webs-reporting/numbers.jsp.
, 2020. Waterbirds around the world. Waterbirds around the World Conference, p.940. Available at: https://hub.jncc.gov.uk/assets/08cfb4da-4c5a-4bef-b45d-8f2f87dc8070.
, 2004. Water Framework Directive: The development and status of phytoplankton tools for ecological assessment of coastal and transitional waters. United Kingdom., Water Framework Directive – United Kingdom Technical Advisory Group (WFD-UKTAG). Available at: https://www.wfduk.org/sites/default/files/Media/Characterisation%20of%20the%20water%20environment/Biological%20Method%20Statements/Phytoplankton%20Technical%20Report_0.pdf.
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The wasting disease of eelgrass (Zostera marina) and its effects on environmental factors and fauna. In Seagrass ecosystems: a scientific perspective. Seagrass ecosystems: a scientific perspective. New York: Marcel Dekker, Inc., p. 314 pp.
, 1977. Wasting disease and present eelgrass condition, Nijmegen, The Netherlands: Catholic University of Nijmegen. Available at: https://www.deltaexpertise.nl/images/2/29/Wasting-disease-and-present-eelgrass-condition.pdf.
, 1990. “Wasting disease” and other dynamic phenomena in Zostera beds. Environmental Impacts On Seagrasses, 27(1), pp.3 - 14. Available at: http://www.sciencedirect.com/science/article/pii/0304377087900829.
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The warm-water “Halo” around Maud Rise: Properties, dynamics and Impact. Deep Sea Research Part I: Oceanographic Research Papers, 54(6), pp.871 - 896. Available at: http://www.sciencedirect.com/science/article/pii/S0967063707000738.
, 2007. Warming temperatures and smaller body sizes: synchronous changes in growth of North Sea fishes. Global Change Biology, 20(4), pp.1023 - 1031. Available at: https://onlinelibrary.wiley.com/doi/full/10.1111/gcb.12514.
, 2014. Warming delays ovarian development in a capital breeder. , 164(4), p.80. Available at: https://link.springer.com/article/10.1007%2Fs00227-017-3116-y.
, 2017. Vulnerability and adaptation of US shellfisheries to ocean acidification. Nature Climate Change, 5(3), pp.207 - 214. Available at: https://www.nature.com/articles/nclimate2508.
, 2015. Visual evidence of reduced seafloor conditions and indications of a cold-seep ecosystem from the Hatton–Rockall basin (NE Atlantic). Journal of the Marine Biological Association of the United Kingdom, 99(2), pp.271-277. Available at: https://www.cambridge.org/core/article/visual-evidence-of-reduced-seafloor-conditions-and-indications-of-a-coldseep-ecosystem-from-the-hattonrockall-basin-ne-atlantic/4C1F83D388F0F87CA9C2A489C9A7FB04.
, 2019. Vessel Replacement and Deployment Plan. Annual Report 2016, The Scottish Government. Available at: https://www.transport.gov.scot/media/41509/vrdp-annual-report-2016-30-january-2018.pdf.
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Variation in fecundity in the lesser sandeel: Implications for regional management. Available at: https://www.cambridge.org/core/journals/journal-of-the-marine-biological-association-of-the-united-kingdom/article/abs/variation-in-fecundity-in-the-lesser-sandeel-implications-for-regional-management/24D8E849B6DABE9F874EAF283F369848.
, 2011. Variability of paralytic shellfish toxin occurrence and profiles in bivalve molluscs from Great Britain from official control monitoring as determined by pre-column oxidation liquid chromatography and implications for applying immunochemical tests. Harmful Algae, 31, pp.87 - 99. Available at: http://www.sciencedirect.com/science/article/pii/S1568988313001558.
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The value of regular monitoring and diverse sampling techniques to assess aquatic non-native species: a case study from Orkney. Management of Biological Invasions, 10(1), pp.46-79. Available at: https://www.reabic.net/journals/mbi/2019/1/MBI_2019_Kakkonen_etal.pdf.
, 2019. Using UWTV surveys to assess and advise on Nephrops stocks., Copenhagen: International Council for the Exploration of the Sea. Available at: https://www.ices.dk/sites/pub/Publication%20Reports/Cooperative%20Research%20Report%20(CRR)/CRR340.pdf.
, 2018. Using UWTS to assess and advise on Nephrops stocks, Copenhagen, Denmark: International Council for the Exploration of the Sea (ICES). Available at: https://www.ices.dk/sites/pub/Publication%20Reports/Cooperative%20Research%20Report%20(CRR)/CRR340.pdf.
, 2018. Using smoothers for comprehensive assessments of contaminant time series in marine biota. ICES Journal of Marine Science, 56(5), pp.779 - 790. Available at: https://academic.oup.com/icesjms/article/56/5/779/691346.
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Using blubber explants to investigate adipose function in grey seals: glycolytic, lipolytic and gene expression responses to glucose and hydrocortisone. Scientific Reports, 7(1), p.7731. Available at: https://doi.org/10.1038/s41598-017-06037-x.
, 2017. Using aircraft in tandem formation to estimate abundance of harbour porpoise. Biometrics , 54(4), pp.1280-1289. Available at: https://www.jstor.org/stable/2533658?seq=1.
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