Thomas B. Parr, Ph.D.

Affiliations: 
2010-2014 Biology The University of Maine, Orono, ME, United States 
 2014-2016 Plant and Soil Science University of Delaware, Newark, DE, United States 
 2016- Biology / Oklahoma Biological Survey University of Oklahoma, Norman, OK, United States 
Area:
Global Change, Aquatic Ecology, Biogeochemistry
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Publications

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Lopez JW, Hartnett RN, Parr TB, et al. (2023) Ecosystem bioelement variability is associated with freshwater animal aggregations at the aquatic-terrestrial interface. Oecologia. 202: 795-806
Higgins E, Parr TB, Vaughn CC. (2022) Mussels and Local Conditions Interact to Influence Microbial Communities in Mussel Beds. Frontiers in Microbiology. 12: 790554
Lopez JW, Parr TB, Allen DC, et al. (2020) Animal aggregations promote emergent aquatic plant production at the aquatic-terrestrial interface. Ecology. e03126
Atkinson CL, Parr TB, Ee BCv, et al. (2020) Length-mass equations for freshwater unionid mussel assemblages: Implications for estimating ecosystem function Freshwater Science. 39: 377-390
Stelzer RS, Parr TB, Coulibaly M. (2020) A ten year record of nitrate retention and solute trends in a Wisconsin sand plains stream: temporal variation at multiple scales Biogeochemistry. 147: 125-147
Parr TB, Vaughn CC, Gido KB. (2019) Animal effects on dissolved organic carbon bioavailability in an algal controlled ecosystem Freshwater Biology. 65: 1298-1310
Humbert G, Parr TB, Jeanneau L, et al. (2019) Agricultural Practices and Hydrologic Conditions Shape the Temporal Pattern of Soil and Stream Water Dissolved Organic Matter Ecosystems. 1-19
Parr TB, Inamdar SP, Miller MJ. (2018) Overlapping anthropogenic effects on hydrologic and seasonal trends in DOC in a surface water dependent water utility. Water Research. 148: 407-415
Hopper GW, Gido KB, Vaughn CC, et al. (2018) Biomass distribution of fishes and mussels mediates spatial and temporal heterogeneity in nutrient cycling in streams. Oecologia
Tomczyk N, Parr TB, Gray E, et al. (2018) Trophic strategies influence metal bioaccumulation in detritus-based, aquatic food webs. Environmental Science & Technology
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