PIE LTER Publications

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Kearney W.S..  2018.  Signals of Nonlinear, Multiscale and Stochastic Processes in Coastal Landscapes. PhD
Kearney W.S., Fagherazzi S..  2016.  Salt marsh vegetation promotes efficient tidal channel networks. Nature Communications. 7
Kearns P.J., Bulseco-McKim A.N., Hoyt H., Angell J.H., Bowen J.L..  2018.  Nutrient Enrichment Alters Salt Marsh Fungal Communities and Promotes Putative Fungal Denitrifiers. Microbial Ecology.
Kearns P.J., Holloway D., Angell J.H., Feinman S.G., Bowen J.L..  2017.  Effect of short-term, diel changes in environmental conditions on active microbial communities in a salt marsh pond. Aquatc Microbial Ecology. 80:29-41.
Kearns P..  2017.  Factors that affect the composition and activity of salt marsh microbial communities: the effect of nutrient loading and diel cycles. PhD
Kiehn W.M., Morris J.T..  2010.  Variability in dimethylsulfoniopropionate (DMSP) in Spartina alterniflora and its effect on Littoraria irrorata.. Marine Ecology Progress Series. 406:47-55.
Kirwan M.L., Temmerman S., Skeehan E.E., Guntenspergen G.R., Fagherazzi S..  2016.  Overestimation of marsh vulnerability to sea level rise. Nature Climate Change.
Klepac-Ceraj V., Bahr M., Crump B.C., Teske A.P., Hobbie J.E., Poltz M.F..  2004.  High overall diversity and dominance of microdiverse relationships in salt marsh sulfate-reducing bacteria.. Environmental Microbiology. 6:686-698.
Koop-Jakobsen K..  2008.  The impact of increased Nitrogen Loading on Gaseous Loss of Nitrogen from Salt Marsh Sediments. Ph.D.
Koop-Jakobsen K., Giblin A.E..  2002.  Tidal flushing of ammonium from intertidal salt marsh sediments - the relative importance of adsorbed ammonium. Biological Bulletin. 203:258-259.
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.
Koop-Jakobsen K..  2003.  Ammonium dynamics in tidal salt marshes - an experimental study of ammonium adsorption, tidal flushing and ammonium volatilization. M.S.:63.
Koop-Jakobsen K., Giblin A.E..  2010.  The effect of increased nitrate loading on nitrate reduction via denitrification and DNRA in salt marsh sediments. Limnology and Oceanography. 55:789-802.
L
Lemay L.E..  2007.  The impact of drainage ditches on salt marsh flow patterns, sedimentation and morphology: Rowley River, Massachusetts. M.S.
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.
Leonardi N., Fagherazzi S..  2015.  Local variability in erosional resistance affects large scale morphodynamic response of salt marshes to wind waves. Geophysical Research Letters. 42
Leonardi N., Ganju N.K., Fagherazzi S..  2016.  A linear relationship between wave power and erosion determines salt-marsh resilience to violent storms and hurricanes. PNAS. 113:64-68.
Leonardi N., Fagherazzi S..  2014.  How waves shape salt marshes. Geology.
Lockfield K., Fleeger J.W., Deegan L.A..  2013.  Mummichog, Fundulus heteroclitus, responses to long-term, whole-ecosystem nutrient enrichment.. Marine Ecological Progress Series. 492:211-222.
Lockfield K..  2011.  Population-level responses of the mummichog, Fundulus heteroclitus, to chronic nutrient enrichment in a New England salt marsh. M.S.:75.
Luciano K.E..  2007.  Investigation into the relationship between morphology and tidal flux in ditched and non-ditched salt marsh creek systems, Rowley, Massachusetts. B.S.

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