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Global Change Biology|April 29, 2015
Impact of climate change on cold hardiness of Douglas-fir (Pseudotsuga menziesii): environmental and genetic considerationsSheel Bansal, J Bradley St Clair, Constance A Harrington, et al.Global Change Biology|April 23, 2016
Will changes in phenology track climate change? A study of growth initiation timing in coast Douglas-firKevin R Ford, Constance A Harrington, Sheel Bansal, et al.The Science of the Total Environment|May 3, 2024
Common use herbicides increase wetland greenhouse gas emissionsChristine M Cornish, Olivia F Johnson, Sheel Bansal, et al.Frontiers in Environmental Science|October 10, 2022
Using a vegetation index to assess wetland condition in the Prairie Pothole Region of North AmericaBrian A Tangen, Sheel Bansal, Seth Jones, et al.Scientific Reports|October 23, 2025
Greenhouse gas emissions from ditches in oil palm plantations on tropical peatlands in MalaysiaKuno Kasak, Iryna Dronova, Kaido Soosaar, et al.The ISME Journal|August 28, 2025
Sulfide stress tolerance as a controller of methane production in temperate wetlandsEmily K Bechtold, Jared B Ellenbogen, Danhui Xin, et al.Indian Journal of Pharmacology|June 16, 2012
Antihyperglycemic effect of Annona squamosa hexane extract in type 2 diabetes animal model: PTP1B inhibition, a possible mechanism of action?Joseph Alex Davis, Suchitra Sharma, Shivani Mittra, et al.Science Advances|March 1, 2023
Large increases in methane emissions expected from North America's largest wetland complexSheel Bansal, Max Post van der Burg, Rachel R Fern, et al.Global Change Biology|January 26, 2024
Recent increases in annual, seasonal, and extreme methane fluxes driven by changes in climate and vegetation in boreal and temperate wetland ecosystemsSarah Feron, Avni Malhotra, Sheel Bansal, et al.Global Change Biology|January 25, 2017
Abundant carbon substrates drive extremely high sulfate reduction rates and methane fluxes in Prairie Pothole WetlandsPaula Dalcin Martins, David W Hoyt, Sheel Bansal, et al.Pageof 3