The unseen iceberg: Plant roots in arctic tundra. New Phytologist. 205(1):34-58.
.
2015. .
2015. .
2014.
Arctic canopy photosynthetic efficiency enhanced under diffuse light, linked to a reduction in the fraction of the canopy in deep shade. New Phytologist. 202:1266-1276.
.
2014. Assessing the spatial variability in peak season CO 2 exchange characteristics across the Arctic tundra using a light response curve parameterization. 11(17):4897-4912.
.
2014. Changes in the structure and function of northern Alaskan ecosystems when considering variable leaf-out times across groupings of species in a dynamic vegetation model. Global Change Biology. 20:963-978.
.
2014. Circumpolar assessment of permafrost C quality and its vulnerability over time using long-term incubation data. Global Change BiologyGlobal Change Biology. 20:641-652.
.
2014. Ecotypic differentiation in photosynthesis and growth of Eriophorum vaginatum along a latitudinal gradient in the Arctic tundra. Botany-BotaniqueBotany-BotaniqueBotany-Botanique. 92:551-561.
.
2014. Eddy covariance for quantifying trace gas fluxes from soils.. SOIL DiscussionSOIL Discussion. 1:541-583.
.
2014. Effects of arctic shrub expansion on biophysical versus biogeochemical drivers of litter decomposition. EcologyEcology. 95:1861–1875.http://dx.doi.org/10.1890/13-2221.1.
.
2014. Evergreen shrubs dominate responses to experimental summer warming and fertilization in Canadian mesic low arctic tundra. 102(3):749-766.
.
2014. Frozen ponds- production and storage of methane during the arctic winter. Biogeosciences Discuss.Biogeosciences Discuss.. 11
.
2014. In situ measurement of dissolved methane and carbon dioxide in freshwater ecosystems by off-axis integrated cavity output spectroscopy. 48(19):11421-11428.
.
2014. LandÔÇôWater Interactions. Alaska's Changing Arctic: Ecological Consequences for Tundra, Streams, and LakesAlaska's Changing Arctic: Ecological Consequences for Tundra, Streams, and Lakes. :143.
.
2014. Long-term experimental warming and nutrient additions increase productivity in tall deciduous shrub tundra. EcosphereEcosphereEcosphere. 5
.
2014. Methane and carbon dioxide emissions from 40 lakes along a north–south latitudinal transect in Alaska. 11(9):13251-13307.
.
2014. Modeling the impediment of methane ebullition bubbles by seasonal lake ice. 11(23):6791-6811.
.
2014. Plant functional types in Earth system models: past experiences and future directions for application of dynamic vegetation models in high-latitude ecosystems. Annals of BotanyAnnals of BotanyAnnals of Botany. 114:1-16.
.
2014. Role of Megafauna and Frozen Soil in the Atmospheric CH4 Dynamics. Plos OnePlos OnePlos One. 9
.
2014. .
2014. Sunlight controls water column processing of carbon in arctic fresh waters. ScienceScienceScience. 345:925-928.
.
2014. Terrestrial ecosystems at Toolik Lake, Alaska. Alaska's Changing Arctic: Ecological Consequences for Tundra, Streams, and LakesAlaska's Changing Arctic: Ecological Consequences for Tundra, Streams, and Lakes. :90.
.
2014. .
2014. Thermal acclimation of shoot respiration in an Arctic woody plant species subjected to 22 years of warming and altered nutrient supply. Global Change BiologyGlobal Change Biology. 20:2618-2630.
.
2014. Constraining spatial variability of methane ebullition seeps in thermokarst lakes using point process models. Journal of Geophysical Research-BiogeosciencesJournal of Geophysical Research-BiogeosciencesJournal of Geophysical Research-Biogeosciences. 118:1015-1034.
.
2013.