PIE LTER Publications

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A
Bernhard A., Landry Z.C., Blevins A., Torre J.R.de al, Giblin A.E., Stahl D.A..  2010.  Abundance of ammonia-oxidizing Archaea and Bacteria along an estuarine salinity gradient in relationship to potential nitrification rates.. Applied and Environmental Microbiology. 76:1285-1289.
Rakshit R..  2012.  Accuracy assessment of object-based image analysis maps. Ph.D.
Guha A..  2009.  Adapting to Suburbanization-Induced Water Stress in Eastern Massachusetts: Opportunities and Constraints for Integrated Land-Use and Water Resource Management.. Graduate School of Geography. M.A.
Buchsbaum R.N., Wigand C.A..  2012.  Adaptive management and monitoring as fundamental tools to effective salt marsh restoration.. Restoring Tidal Flow to Salt Marshes: A Synthesis of Science and Management in New England (USA).
Frank H.J., Mather M.E., Muth R.M., Pautzke S.M., Smith J.M., Finn J.T..  2009.  The Adopt-a-Herring Program as a Fisheries Conservation Tool. Fisheries. 34:496-507.
Koop-Jakobsen K., Giblin A.E..  2009.  Anammox in tidal marsh sediments: The role of salinity, nitrogen loading, and marsh vegetation. Estuaries and Coasts. 32:238-245.
Pellerin B.A., Wollheim W.M., Feng X., Vorosmarty C.J..  2007.  The application of electrical conductivity as a tracer for hydrograph separation in urban catchments.. Hydrological Processes. 22:1810-1818.
Pontius, Jr. R.G., Petrova S..  2010.  Assessing a predictive model of land change using uncertain data. Environmental Modeling & Software. 25:299-309.
Jezycki K..  2019.  Assessing heavy metal pollution in estuarine systems along the eastern United States in relation to land use land cover changes.. MS
Polsky C., Grove J.M., Knudson C., Groffman P.M., Bettez N.D., Canvender-Bares J., Hall S.J., Heffernan J.B., Hobbie S.E., Larson K.L. et al..  2014.  Assessing the homogenization of urban land management with an application to US residential lawn care.. Proceedings of the National Academy of Sciences. 111:4432-4437.
Morris J.T., Edwards J., Crooks S., Reyes E..  2012.  Assessment of Carbon Sequestration Potential in Coastal Wetlands.. Recarbonization of the Bioshpere: Ecosystem and Global Carbon Cycle. . :517-531.
C
Zawatski M..  2018.  Carbon exchange and sediment deposition in a heterogeneous New England salt marsh. MS
Hopkinson C.S., Cai W-J., Hu X..  2012.  Carbon sequestration in wetland dominated coastal systems — a global sink of rapidly diminishing magnitude. Current Opinion in Environmental Sustainability. 4:186-194.
Wollheim W.M., Green M.B., Pellerin B.A., Morse N.B., Hopkinson C.S..  2013.  Causes and Consequences of Ecosystem Service Regionalization in a Coastal Suburban Watershed. Estuaries and Coasts.
Donatelli C., Ganju N.K., Kalra T.S., Fagherazzi S., Leonardi N..  2019.  Changes in hydrodynamics and wave energy as a result of seagrass decline along the shoreline of a microtidal back-barrier estuary.. Advances in Water Resources. 128:183-192.
Buchsbaum R., Catena E.H., James-Pirri M.J..  2006.  Changes in salt marsh vegetation, Phragmites australis, and nekton in response to increased tidal flushing in a New England salt marsh.. Wetlands. 26:544-557.
Bauer J.E., Cai W-J., Raymond P.A, Bianchi T.S., Hopkinson C.S., Regnier P.A.G..  2013.  The changing carbon cycle of the coastal ocean.. Nature. 504:61-70.
Zhang Y..  2011.  Characterizing land changes over several points in time. M.S.
Johnson D.S., Short M.I..  2013.  Chronic nutrient enrichment increases the density and biomass of the mudsnail, Nassarius obsoletus.. Estuaries and Coasts. 36:28-35.
Morse N.B., Wollheim W.M..  2014.  Climate variability masks the impacts of land use change on nutrient export in a suburbanizing watershed. Biogeochemistry.

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