PIE LTER Publications

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Pontius, Jr. R.G., Claessens L., Hopkinson C., Marzouk A., Rastetter E.B., Schneider L.C., Vallino J..  2000.  Scenarios of land-use change and nitrogen release in the Ipswich watershed, Massachusetts, USA. Proceedings of the 4th International Conference on Integrating Geographic Information Systems and Environmental Modeling: Problems, prospects, and Needs for Research.
Huffaker D..  2003.  The scale at which land change models are accurate.. B.S.
Johnson D.S..  2015.  The savory swimmer swims North: A northern range extension of the blue crab Callinectes sapidus? Journal of Crustacean Biology. 35:105-110.
Groffman P.M., Grove J.M., Polsky C., Bettez N.D., Morse J.L., Cavender-Bares J., Hall S.J., Heffernan J.B., Hobbie S.E., Larson K.L. et al..  2016.  Satisfaction, water and fertilizer use in the American residential macrosystem. Environmental Research Letters.
Wilson C.A., Hughes Z.J., FitzGerald D.M., Hopkinson C.S., Valentine V., Kolker A.S..  2014.  Saltmarsh pool and tidal creek morphodynamics: Dynamic equilibrium of northern latitude saltmarshes? Geomorphology. :99-115.
Johnson D.S., Warren R.S., Deegan L.A., Mozdzer T.J..  2016.  Saltmarsh plant responses to eutrophication. Ecological Applications.
Kearney W.S., Fagherazzi S..  2016.  Salt marsh vegetation promotes efficient tidal channel networks. Nature Communications. 7
Bowen J.L., Crump B.C., Deegan L.A., Hobbie J.E..  2009.  Salt marsh sediment bacteria: their distribution and response to external nutrient inputs. The ISME Journal. 3:924-934.
Morris J.T., Sundberg K., Hopkinson C.S..  2013.  Salt marsh primary production and its responses to relative sea level and nutrients. Oceanography. 26:78-84.
Spivak A.C., Denmark A., Gosselin K., Sylva S.P..  2020.  Salt Marsh Pond Biogeochemistry Changes Hourly to Yearly but Does Not Scale With Dimensions or Geospatial Position. Journal of Geophysical Research: Biogeosciences. 125
Crosby S.C., Sax D., Palmer M.E., Booth H.S., Deegan L.A., Bertness M.D., Leslie H.M..  2016.  Salt marsh persistence is threatened by predicted sea-level rise. Estuarine and Coastal Shelf Science. 181:93-99.
Miller G.J.  2019.  Salt marsh health and biomass responses to a changing environment. :140.
Torres R., Fagherazzi S., van Proosdij D., Hopkinson C..  2006.  Salt marsh geomorphology: Physical and ecological effects on landform. Estuarine, Coastal and Shelf Science. 69:309-310.
Fagherazzi S., Torres R., Hopkinson C., vanProosdij D..  2004.  The Salt Marsh Geomorphology: Physical and Ecological Effects on Landform. AGU Chapman Conference. 86:57-58.
Millette T.L., Argow B., Marcano E., Hayward C., Hopkinson C., Valentine V..  2010.  Salt marsh geomorphological analyses via integration of multi-temporal multispectral remote sensing with LIDAR and GIS.. Journal of Coastal Research. 26:809-816.
Leonardi N., Defne Z., Ganju N.K., Fagherazzi S..  2016.  Salt marsh erosion rates and boundary features in a shallow Bay. Journal of Geophysical Research: Earth Surface. 121:1861-1875.
Deegan L.A, Hughes J.E., Rountree R.A..  2000.  Salt marsh ecosystem support of marine transient species.. Concepts and Controversies in Tidal Marsh Ecology. :333-365.
Drake D.C., Peterson B.J., Galván K.A., Deegan L.A., Fleeger J.W., Hopkinson C., Johnson J.M., Koop-Jakobsen K., Lemay L.E., Miller E.E. et al..  2009.  Salt marsh ecosystem biogeochemical responses to nutrient enrichment: A paired 15N tracer study.. Ecology. 90:2535-2546.
Mondrup T..  2000.  Salinity effects on tolerance and adaptation of estuarine nitrifying bacteria investigated by a plug-flux method. M.S.
Mondrup T..  1999.  Salinity effects on nitrogen dynamics in estuarine sediment investigated by a plug-flux method. Biological Bulletin. 197:287-288.

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