The Institute communicates its scientific and educational information in a number of ways. One major outlet is peer-reviewed publications and reports.  Cary Institute staff regularly publish in the best-rated journals in their respective fields.

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Journal Article
B. C. Weidel, et al., “Carbon sources supporting fish growth in north temperate lakes”, Aquat. Sci., vol. 70, p. 446-458, 2008.
M. A. Lenker, B. C. Weidel, O. P. Jensen, and C. T. Solomon, “Developing recreational harvest regulations for an unexploited lake trout population”, North American Journal of Fisheries Management, vol. 36, p. 385-397, 2016.
B. C. Weidel, et al., “Diary of a bluegill (Lepomis macrochirus): Daily delta C-13 and delta O-18 records in otoliths by ion microprobe”, Can. J. Fish. Aquat. Sci., vol. 64, p. 1641-1645, 2007.
S. C. Godwin, S. E. Jones, B. C. Weidel, and C. T. Solomon, “Dissolved organic carbon concentration controls benthic primary production: Results from in situ chambers in north-temperate lakes”, Limnology and Oceanography, vol. 59, p. 2112-2120, 2014.
C. J. Brosseau, T. J. Cline, J. J. Cole, J. R. Hodgson, M. L. Pace, and B. C. Weidel, “Do Daphnia use metalimnetic organic matter in a north temperate lake? An analysis of vertical migration”, Inland Waters, vol. 2, p. 193-198, 2012.
M. L. Pace, et al., “Does terrestrial organic carbon subsidize the plankton food web in a clear-water lake?”, Limnol. Oceanogr., vol. 52, p. 2177-2189, 2007.
S. R. Carpenter, et al., “Early Warnings of Regime Shifts: A Whole-Ecosystem Experiment”, Science, vol. 332, p. 1079-1082, 2011.
T. J. Cline, et al., “Early warnings of regime shifts: evaluation of spatial indicators from a whole-ecosystem experiment”, Ecosphere, vol. 5, no. 8, p. art102, 2014.
C. T. Solomon, et al., “Ecosystem consequences of changing inputs of terrestrial dissolved organic matter to lakes: current knowledge and future challenges”, Ecosystems, vol. 18, p. 376-389, 2015.
P. T. Kelly, N. Craig, C. T. Solomon, B. C. Weidel, J. A. Zwart, and S. E. Jones, “Experimental whole-lake increase of dissolved organic carbon concentration produces unexpected increase in crustacean zooplankton density”, Global Change Biology, vol. 22, no. 8, p. 2766 - 2775, 2016.
N. Craig, S. E. Jones, B. C. Weidel, and C. T. Solomon, “Habitat, not resource availability, limits consumer production in lake ecosystems”, Limnology and Oceanography, vol. 60, p. 2079-2089, 2015.
J. A. Zwart, N. Craig, P. T. Kelly, C. T. Solomon, B. C. Weidel, and S. E. Jones, “Metabolic and physiochemical responses to a whole-lake experimental increase in dissolved organic carbon in a north-temperate lake”, Limnology and Oceanography, vol. 61, p. 723-734, 2016.
J. M. Vander Zanden, M. K. Clayton, E. K. Moody, C. T. Solomon, and B. C. Weidel, “Stable Isotope Turnover and Half-Life in Animal Tissues: A Literature Synthesis”, PLoS One, vol. 10, 2015.
J. J. Cole, S. R. Carpenter, J. F. Kitchell, M. L. Pace, C. T. Solomon, and B. C. Weidel, “Strong evidence for terrestrial support of zooplankton in small lakes based on stable isotopes of carbon, nitrogen, and hydrogen”, Proc. Nat. Acad. Sci., vol. 108, p. 1975-1980, 2011.
S. E. Jones, C. T. Solomon, and B. C. Weidel, “Subsidy or subtraction: How do terrestrial inputs influence consumer production in lakes?”, Freshwater Reviews, vol. 5, p. 37-49, 2012.
C. T. Solomon, et al., “Terrestrial, benthic, and pelagic resource use in lakes: results from a three-isotope Bayesian mixing model”, Ecology, vol. 92, p. 1115-1125, 2011.
P. T. Kelly, C. T. Solomon, B. C. Weidel, and S. E. Jones, “Terrestrial carbon is a resource, but not a subsidy, for lake zooplankton”, Ecology, vol. 95, p. 1236-1242, 2014.

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