Publications
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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, “Sources and fates of dissolved organic carbon in lakes as determined by whole-lake carbon isotope additions”, Biogeochemistry, vol. 84, p. 115-129, 2007.
, “Spatial and temporal variability in the lower food web of the tidal freshwater Hudson River”, Estuaries, vol. 19, p. 866-873, 1996.
, “Spatial heterogeneity strongly affects estimates of ecosystem metabolism in two north temperate lakes”, Limnology and Oceanography, vol. 57, no. 6, p. 1689 - 1700, 2012.
, “A spatially explicit model of iron loading to lakes”, Limnol. Oceanogr., vol. 51, p. 247-256, 2006.
, “A spatially-explicit, mass-balance analysis of watershed-scale controls on lake chemistry”, in S. Miao, M. Nungesser, and S. Carstenn (eds.). Real World Ecology: Large-Scale and Long-Term Case Studies and Methods, 2008.
, “A spatially-explicit watershed-scale analysis of dissolved organic carbon in Adirondack lakes”, Ecol. Appl., vol. 14, p. 839-854, 2004.
, “Strategy and checklist for effective scientific talks”, Bull. Ecol. Soc. Am., vol. 72, p. 8-11, 1991.
, “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.
Successes, Limitations, and Frontiers in Ecosystem Science. 1998, p. 499.
, “Successes, Limitations and Frontiers in Ecosystem Science: reflections on the Seventh Cary Conference”, Ecosystems, vol. 1, p. 137-142, 1998.
, “Support of benthic invertebrates by detrital resources and current autochthonous primary production: Results from a whole-lake C-13 addition”, Freshwater Biol., vol. 53, p. 42-54, 2008.
, “Synchronous variation of dissolved organic carbon and color in lakes”, Limnol. Oceanogr., vol. 47, p. 333-342, 2002.
, “Synthesis: What kind of discipline is this, anyhow?”, in M. L. Pace and P. M. Groffman (eds.). Successes, Limitations, and Frontiers in Ecosystem Science, 1998, p. 473-481.
, “Terrestrial, benthic, and pelagic resource use in lakes: results from a three-isotope Bayesian mixing model”, Ecology, vol. 92, p. 1115-1125, 2011.
, “Terrestrial dominance of organic matter in north temperate lakes”, Global Biogeochemical Cycles, 2013.
, “Total carbon analysis may overestimate organic carbon content of fresh waters in the presence of high dissolved inorganic carbon”, Limnol. Oceanogr. Methods, vol. 8, p. 196-201, 2010.
, “Transformation of freshwater ecosystems by bivalves: a case study of zebra mussels in the Hudson River”, BioScience, vol. 49, p. 19-27, 1999.
, “Trophic cascades and compensation: differential responses of microzooplankton in whole lake experiments”, Ecology, vol. 79, p. 138-152, 1998.
, “Trophic cascades in lakes: Lessons and prospects”, in J. Terborgh and J. Estes (eds). Trophic Cascades, 2010, p. 55-69.
, “Trophic cascades, nutrients and lake productivity: experimental enrichment of lakes with contrasting food webs”, Ecol. Monogr., vol. 71, p. 163-186, 2001.
, “Trophic cascades revealed in diverse ecosystems”, Trends Ecol. Evol., vol. 14, p. 483-488, 1999.
, “Understanding the long-term effects of species invasions”, Trends Ecol. Evol., vol. 21, p. 645-651, 2006.
, Upton Lake. 1989.
, “The utility of simple models in ecosystem science”, in C. D. Canham, J. J. Cole, and W. K. Lauenroth (eds.). Models in Ecosystem Science, 2003, p. 49-62.
, “Validity of eucaryote inhibitors for assessing production and grazing mortality of marine bacterioplankton”, Appl. Environ. Microbiol., vol. 53, p. 119-128, 1987.