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Environmental Science & Technology|June 30, 2020
Road Salt Impacts Freshwater Zooplankton at Concentrations below Current Water Quality GuidelinesShelley E Arnott, Martha P Celis-Salgado, Robin E Valleau, et al.Ecology Letters|January 27, 2010
Environmental stability and lake zooplankton diversity - contrasting effects of chemical and thermal variabilityJonathan B Shurin, Monika Winder, Rita Adrian, et al.Journal of Paleolimnology|November 1, 2021
Early presence of Bythotrephes cederströmii (Cladocera: Cercopagidae) in lake sediments in North America: evidence or artifact?Nichole E DeWeese, Elizabeth J Favot, Donn K Branstrator, et al.Proceedings. Biological Sciences|November 21, 2014
The jellification of north temperate lakesAdam Jeziorski, Andrew J Tanentzap, Norman D Yan, et al.Science (New York, N.Y.)|November 29, 2008
The widespread threat of calcium decline in fresh watersAdam Jeziorski, Norman D Yan, Andrew M Paterson, et al.Environmental Research Letters : ERL [Web Site]|July 25, 2022
Cleaner air reveals growing influence of climate on dissolved organic carbon trends in northern headwatersHeleen A de Wit, John L Stoddard, Donald T Monteith, et al.Proceedings of the National Academy of Sciences of the United States of America|March 2, 2005
Climate-driven regime shifts in the biological communities of arctic lakesJohn P Smol, Alexander P Wolfe, H John B Birks, et al.Scientific Reports|July 20, 2019
Widespread diminishing anthropogenic effects on calcium in freshwatersGesa A Weyhenmeyer, Jens Hartmann, Dag O Hessen, et al.Global Change Biology|July 9, 2021
Earlier winter/spring runoff and snowmelt during warmer winters lead to lower summer chlorophyll-a in north temperate lakesAllison R Hrycik, Peter D F Isles, Rita Adrian, et al.Nature|June 3, 2021
Widespread deoxygenation of temperate lakesStephen F Jane, Gretchen J A Hansen, Benjamin M Kraemer, et al.Pageof 4