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The Science of the Total Environment|December 19, 2023
Habitat and dissolved organic carbon modulate variation in the biogeochemical drivers of mercury bioaccumulation in dragonfly larvae at the national scaleSarah J Nelson, James Willacker, Collin Eagles-Smith, et al.The Science of the Total Environment|August 16, 2019
Effects of temperature, salinity, and sediment organic carbon on methylmercury bioaccumulation in an estuarine amphipodAmanda N Curtis, Kimberly Bourne, Mark E Borsuk, et al.Scientific Reports|August 20, 2021
Elevated temperature and browning increase dietary methylmercury, but decrease essential fatty acids at the base of lake food websPianpian Wu, Martin J Kainz, Fernando Valdés, et al.Journal of the Marine Biological Association of the United Kingdom. Marine Biological Association of the United Kingdom|February 3, 2016
Mercury, selenium and fish oils in marine food webs and implications for human healthMatthew O Gribble, Roxanne Karimi, Beth J Feingold, et al.Canadian Journal of Fisheries and Aquatic Sciences. Journal Canadien Des Sciences Halieutiques Et Aquatiques|July 14, 2017
Mercury bioaccumulation increases with latitude in a coastal marine fish (Atlantic silverside, Menidia menidia)Zofia Baumann, Robert P Mason, David O Conover, et al.Ecotoxicology (London, England)|October 14, 2018
Spatial and taxonomic variation of mercury concentration in low trophic level fauna from the Mediterranean SeaKate L Buckman, Oksana Lane, Jože Kotnik, et al.Journal of Environmental Quality|January 5, 2006
Impact of land disturbance on the fate of arsenical pesticidesCarl E Renshaw, Benjamin C Bostick, Xiahong Feng, et al.Environmental Health Perspectives|December 17, 2008
Meeting report: Methylmercury in marine ecosystems--from sources to seafood consumersCelia Y Chen, Nancy Serrell, David C Evers, et al.Plos One|February 22, 2014
Benthic and pelagic pathways of methylmercury bioaccumulation in estuarine food webs of the northeast United StatesCelia Y Chen, Mark E Borsuk, Deenie M Bugge, et al.Environmental Science & Technology|July 7, 2018
Arsenic Reduces Gene Expression Response to Changing Salinity in KillifishThomas H Hampton, Craig Jackson, Dawoon Jung, et al.Pageof 7