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Long-term environmental change in Arctic and Antarctic lakes ( ) 475-507 (Kluwer Academic Publishers, 2004).
Paleolimnology of Perenially Ice-Covered Antarctic Oasis Lakes. Ph.D., (1996).
Paleolimnology of the McMurdo Dry Valleys, Antarctica. Journal of Paleolimnology 10, 85-114 (1994).
Particulate organic and dissolved inorganic carbon stable isotopic compositions in Taylor Valley lakes, Antarctica: the effect of legacy. Hydrobiologia 632, 139-156 (2009).
Perennial Antarctic Lake Ice: An Oasis for Life in a Polar Desert. Science 280, 2095-2098 (1998).
The permanent ice cover of Lake Bonney, Antarctica: The influence of thickness and sediment distribution on photosynthetically available radiation and chlorophyll-a distribution in the underlying water column. Journal of Geophysical Research: Biogeosciences 119, 1879 - 1891 (2014).
Physical controls on the Taylor Valley Ecosystem, Antarctica. BioScience 49, 961-972 (1999).
The physical limnology of a permanently ice-covered and chemically stratified Antarctic lake using high resolution spatial data from an autonomous underwater vehicle. Limnology and Oceanography 63, 1234 - 1252 (2018).
Poisson Reconstruction of Extreme Submersed Environments: The ENDURANCE Exploration of an Under-Ice Antarctic Lake. Advances in Visual Computing. ISVC 2012. Lecture Notes in Computer Science. 7431, 394 - 403 (Springer Berlin Heidelberg, 2012).
Advances in Astrobiology and Biogeophysics 219-233 (Springer Verlag, 2005). doi:LTER
Prediction of ice-free conditions for a perennially ice-covered Antarctic lake. Journal of Geophysical Research: Earth Surface 124, (2019).
Radiocarbon abundance and reservoir effects in lakes of the McMurdo Dry Valleys, Antarctica. Limnology and Oceanography 59, 811-826 (2014).
Recent Temperature Trends in the Antarctic. Nature 418, 291-292 (2002).
Reconstructing the evolution of Lake Bonney, Antarctica using dissolved noble gases. Applied Geochemistry 58, 46 - 61 (2015).
Reply to comment by K. Gajewski on “Abrupt environmental change in Canada's northernmost lake”. Geophysical Research Letters 35, (2008).
Reply to Comments on “Examining the Scientific Consensus on Climate Change”. Eos, Transactions American Geophysical Union 90, 233 (2009).
Responses of Antarctic Marine and Freshwater Ecosystems to Changing Ice Conditions. BioScience 66, 864 - 879 (2016).
Life in Antarctic Deserts and other Cold Dry Environments 160 - 194 (Cambridge University Press, 2010). doi:10.1017/CBO9780511712258.006
The seasonal evolution of albedo across glaciers and the surrounding landscape of Taylor Valley, Antarctica. The Cryosphere 14, 769-788 (2020).
Sediment transport dynamics on an ice-covered lake: The “floating” boulders of Lake Hoare, Antarctica. Antartic Science firstview, 1-12 (2015).
Single-grain and multigrain luminescence dating of on-ice and lake-bottom deposits at Lake Hoare, Taylor Valley, Antarctica. Quaternary Geochronology 5, 679 - 690 (2010).
Snow patch influence on soil biogeochemical processes and invertebrate distribution in the McMurdo Dry Valleys, Antarctica. Arctic, Antarctic, and Alpine Research 35, 91-99 (2002).
Spatiotemporal impact of snow on underwater photosynthetically active radiation in Taylor Valley, East Antarctica. Department of Geology and Geophysics M.S., (2019).
Spectrofluorometric characterization of aquatic fulvic acid for determination of precursor organic material and general structural properties. Limnology and Oceanography 46, 38-48 (2001).