Bibliography
“Synchrony And Seasonality In Bacterioplankton Communities Of Two Temperate Rivers”. Limnology And Oceanography 50, no. 6. Limnology And Oceanography (2005): 1718-1729. doi:10.4319/lo.2005.50.6.1718.
. “Synthesis Of Effects In Four Arctic Subregions”. Ambio 33, no. 7. Ambio (2004): 469-473. doi:10.1579/0044-7447-33.7.469.
. “A Synthesis: The Role Of Nutrients As Constraints On Carbon Balances In Boreal And Arctic Regions”. Plant And Soil 242. Plant And Soil (2002): 163-170. doi:10.1023/A:1019670731128.
. “Tall Deciduous Shrubs Offset Delayed Start Of Growing Season Through Rapid Leaf Development In The Alaskan Arctic Tundra”. Arctic, Antarctic And Alpine Research 46, no. 3. Arctic, Antarctic And Alpine Research (2014). doi:10.1657/1938-4246-46.3.682.
. “Temperature And Soil Organic Matter Decomposition Rates - Synthesis Of Current Knowledge And A Way Forward”. Global Change Biology 17, no. 11. Global Change Biology (2011): 3392-3404. doi:10.1111/j.1365-2486.2011.02496.x.
. “Temperature And Vegetation Seasonality Diminishment Over Northern Lands”. Nature Climate Change 3. Nature Climate Change (2013): 581-586. doi:10.1038/nclimate1836.
. “Temperature Calibration And Phylogenetically Distinct Distributions For Freshwater Alkenones: Evidence From Northern Alaskan Lakes.”. Geocosmochima Cosmochima Acta 180. Geocosmochima Cosmochima Acta (2016): 177-196. doi:10.1016/j.gca.2016.02.019.
. “Temperature Controls On Aquatic Bacterial Production And Community Dynamics In Arctic Lakes And Streams”. Environmental Microbiology 12, no. 5. Environmental Microbiology (2010): 1319–1333. doi:10.1111/j.1462-2920.2010.02176.x.
. “Temperature Response Of Leaf Respiration Influenced By Emerging Canopy Dynamics In Arctic Shrub Species”. Department Of Ecology, Evolution And Environmental Biology. Department Of Ecology, Evolution And Environmental Biology. Columbia University, 2011.
. “Terrestrial C Sequestration At Elevated-Co2 And Temperature: The Role Of Dissolved Organic N Loss”. Ecological Applications 15, no. 1. Ecological Applications (2005): 71-86. doi:10.1890/03-5303.
. “Terrestrial Ecosystems At Toolik Lake, Alaska”. In A Changing Arctic: Ecological Consequences For Tundra, Streams And Lakes, 90-142. A Changing Arctic: Ecological Consequences For Tundra, Streams And Lakes. New York, NY: Oxford University Press, 2014. doi:10.1093/acprof:osobl/9780199860401.003.0005.
. “Terrestrial-Aquatic Transfers Of Carbon Dioxide, Methane, And Organic Carbon From Riparian Wetlands To An Arctic Headwater Stream”. Department Of Ecology And Evolutionary Biology. Department Of Ecology And Evolutionary Biology. University of Michigan, 2014. http://hdl.handle.net/2027.42/107433.
. “A Test Of Functional Convergence In Carbon Fluxes From Coupled C And N Cycles In Arctic Tundra”. Ecological Modelling 383. Ecological Modelling (2018): 31 - 40. doi:10.1016/j.ecolmodel.2018.05.017.
. “Thermal Acclimation Of Shoot Respiration In An Arctic Woody Plant Species Subjected To 22 Years Of Warming And Altered Nutrient Supply”. Global Change Biology 20, no. 8. Global Change Biology (2014): 2618-2630. doi:10.1111/gcb.12544.
. “Thermal Modeling Of Three Lakes Within The Continuous Permafrost Zone In Alaska Using The Lake 2.0 Model”. Geoscientific Model Development 15, no. 19. Geoscientific Model Development (2022): 7421 - 7448. doi:10.5194/gmd-15-7421-2022.
. “Thermokarst And Wildfire: Effects Of Disturbances Related To Climate Change On The E Cological Characteristics And Functions Of Arctic Headwater Streams”. Natural Resources. Natural Resources. The University of Vermont, 2015. https://scholarworks.uvm.edu/graddis/520.
. “Tight Coupling Between Leaf Area Index And Foliage N Content In Arctic Plant Communities”. Oecologia 142, no. 3. Oecologia (2005): 421-427. doi:10.1007/s00442-004-1733-x.
. “Tiller Population Dynamics Of Reciprocally Transplanted Eriophorum Vaginatum L. Ecotypes In A Changing Climate”. Population Ecology 57, no. 1. Population Ecology (2015): 117-126. doi:10.1007/s10144-014-0459-9.
. “Time Lags: Insights From The U.s. Long Term Ecological Research Network”. Ecosphere 12. Ecosphere (2021). doi:10.1002/ecs2.3431.
. “The Toolik Lake Project: Terrestrial And Freshwater Research On Change In The Arctic”. In Proceedings Of The University Of Alaska Confrence, "International Conference On The Role Of Polar Regions In Global Change", June 1990, 378-383. Proceedings Of The University Of Alaska Confrence, "International Conference On The Role Of Polar Regions In Global Change", June 1990. Fairbanks, Alaska: University of Alaska, 1991.
. “Top-Down Control”. In Encyclopedia Of Theoretical Ecology, 4:739-744. Encyclopedia Of Theoretical Ecology. University of California Press, 2012.
. “Top-Down Is Bottom-Up: Does Predation In The Rhizosphere Regulate Aboveground Production?”. Ecology 84. Ecology (2003): 84-857. doi:10.1890/0012-9658(2003)084%5B0846:TIBDPI%5D2.0.CO;2.
. “Toxic Effects Of Prudhoe Bay Crude Oil On Arctic Freshwater Zooplankton”. University of Kansas, 1980.
. “A Tracer Investigation Of Nitrogen Cycling In A Pristine Tundra River”. Canadian Journal Of Fisheries And Aquatic Sciences 54, no. 10. Canadian Journal Of Fisheries And Aquatic Sciences (1997): 2361-2367. doi:10.1139/f97-142.
. “Tracking Carbon Within The Trees”. New Phytologist 197, no. 3. New Phytologist (2013): 685-686. doi:10.1111/nph.12095.
.