Bibliography
“The Yedoma Suite of the Northeastern Siberian Shelf Region: Characteristics and Concept of Formation”, Ninth International Conference on Permafrost. Institute of Northern Engineering, University of Alaska Fairbanks, Fairbanks, USA, pp. 1595-1600, 2008.
, “Yedoma: Late Pleistocene ice-rich syngenetic permafrost of Beringia”, in The Encyclopedia of Quaternary Science, vol. 3, Amsterdam: Elsevier, 2013, pp. 542-552.
, “Winter biological processes could help convert arctic tundra to shrubland”, Bioscience, vol. 55, pp. 17-26, 2005.
, “Why permafrost is thawing, not melting”, EOS, vol. 91, p. 87, 2010.
, “Weichselian and Holocene palaeoenvironmental history of the Bol’shoy Lyakhovsky Island, New Siberian Archipelago, Arctic Siberia”, Boreas, vol. 38, pp. 72-110, 2009.
, “Water balance response of permafrost-affected watersheds to changes in air temperatures”, Environmental Research Letters, vol. 16, no. 8, p. 084054, 2021.
, “Vulnerability of permafrost carbon to climate change: Implications for the global carbon cycle”, Bioscience, vol. 58, pp. 701-714, 2008.
, “Vulnerability of high-latitude soil organic carbon in North America to disturbance”, Journal of Geophysical Research - Biogeosciences, vol. 116, p. G00K06, 2011.
, “Vulnerability and feedbacks of permafrost to climate change”, Eos Trans. AGU, vol. 92, pp. 73-74, 2011.
, “Vegetation-soil-thaw-depth relationships along a low-arctic bioclimate gradient, Alaska: synthesis of information from the ATLAS studies”, Permafrost and Periglacial Processes, vol. 14, pp. 103-123, 2003.
, “Vegetation on mesic loamy and sandy soils along a 1700-km maritime Eurasia Arctic Transect”, Applied Vegetation ScienceApplied Vegetation ScienceAppl Veg Sci, vol. 22, no. 1, pp. 150 - 167, 2019.
, “Using the deuterium isotope composition of permafrost melt water to constrain thermokarst lake contributions to atmospheric CH4 during the last deglaciation”, Journal of Geophysical Research G: Biogeosciences, vol. 117, p. G01022, 2012.
, “Using in-situ temperature measurements to estimate saturated soil thermal properties by solving a sequence of optimization problems”, The Cryosphere, vol. 1, pp. 41-58, 2007.
, , “Using dynamical downscaling to close the gap between global change scenarios and local permafrost dynamics”, Global and Planetary Change, vol. 56, pp. 203-214, 2007.
, “The use of CORONA images in remote sensing of periglacial geomorphology: an illustration from the NE Siberian coast”, Permafrost & Periglacial Processes, vol. 16, pp. 163-172, 2005.
, “Use of COMSOL Multiphysics to Develop a Shallow Preliminary Conceptual Model for Geothermal Exploration at Pilgrim Hot Springs, Alaska”, Geothermal Research Council, vol. 39. Reno, NV, 2012.
, , “Tundra Underlain By Thawing Permafrost Persistently Emits Carbon to the Atmosphere Over 15 Years of Measurements”, Journal of Geophysical Research: BiogeosciencesJournal of Geophysical Research: BiogeosciencesJ Geophys Res Biogeosci, vol. 126, no. 6, p. e2020JG006044, 2021.
, “Tundra landscape heterogeneity, not interannual variability, controls the decadal regional carbon balance in the Western Russian Arctic”, Global Change BiologyGlobal Change BiologyGlob Change Biol, vol. 24, no. 11, pp. 5188 - 5204, 2018.
, , “To Measure the Changing Relief of Arctic Rivers: A Synthetic Aperture RADAR Experiment in Alaska”, Journal of Geoscience and Environment Protection, vol. 6, no. 9, pp. 207-222, 2018.
, “Thermokarst rates intensify due to climate change and forest fragmentation in an Alaskan boreal forest lowland”, Global Change Biology, vol. 22, no. 2, pp. 816 - 829, 2016.
, “Thermokarst Lakes, Drainage, and Drained Basins”, in Treatise on Geomorphology, 1stst ed., vol. 8, San Diego: Academic Press, 2013, pp. 325-353.
, “Thermokarst Lakes as a Source of Atmospheric CH4 During the Last Deglaciation”, Science, vol. 318, pp. 633-636, 2007.
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