PIE LTER Publications

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Journal Article
Ganju N.K., Defne Z., Kirwan M.L., Fagherazzi S., D'Alpaos A., Carniello L..  2017.  Spatially integrative metrics reveal hidden vulnerability of microtidal salt marshes. Nature Communications. 8
Fry B., Cieri M., Hughes J., Tobias C., Deegan L.A., Peterson B..  2008.  Stable isotope monitoring of benthic-pelagic coupling with salt marsh fish. Marine Ecology Progress Series. 369:193-204.
Deegan L.A., Bowen J.L., Drake D.C., Fleeger J.W., Friedrichs C.T., Galván K.A., Hobbie J.E., Hopkinson C., Johnson D.S., Johnson J.M. et al..  2007.  Susceptibility of salt marshes to nutrient enrichment and predator removal. Ecological Applications. 17:S-42-S63.
Mitwally H.M., Fleeger J.W..  2016.  A test of biological trait analysis with nematodes and an anthropogenic stressor. Environmental Monitoring and Assessment. 188
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.
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.
Burdick D., Buchsbaum R., Holt E..  2001.  Variation in soil salinity associated with the expansion of Phragmites australis in salt marshes. Environmental and Experimental Botany. 46:247-261.
Johnson D.S., Fleeger J.W., Galván K.A., Moser E.B..  2007.  Worm holes and their space-time continuum: Spatial and temporal variability of macroinfaunal annelids in a northern New England salt marsh. Estuaries and Coasts. 30:226-237.
Thesis
Koop-Jakobsen K..  2003.  Ammonium dynamics in tidal salt marshes - an experimental study of ammonium adsorption, tidal flushing and ammonium volatilization. M.S.:63.
Jr. J.D.Edwards.  2016.  Applicability of LiDAR Technology in Saltmarshes: Landscape-Scale Predictive Models to Local-Scale Biomass Estimation. M.S.:134.
Zawatski M..  2018.  Carbon exchange and sediment deposition in a heterogeneous New England salt marsh. MS
Galván K.A..  2008.  The diet of saltmarsh invertebrates. Ph.D.:238.
Booth H.S..  2013.  Does Chronic Nutrient Enrichment Result in a Trophic Bottleneck in a Salt Marsh? Honors, BS
Howard E..  2017.  Ecosystem metabolism in salt marsh tidal creeks and ponds: Applying triple oxygen isotopes and other gas tracers to novel environments. PhD
Valentine K..  2013.  The Effect of Physical and Biological Processes on the erosion of Cohesive Sediments. B.S.
Twitchell S..  2003.  The effects of long term nutrient addition on a salt marsh community. B.S.
Sullivan H.L..  2014.  The effects of nitrate fertilization on the photosynthetic performance of the salt marsh cordgrass, Spartina alterniflora. M.S.
Freidman K..  2013.  The effects of nitrate fertilization on the physiology of a common salt marsh cordgrass species, Spartina alterniflora. M.S.
Randall J..  2005.  The effects of nutrient enrichment and predator removal on algal communities in a New England Marsh.. B.S.
Charles H..  2007.  Effects of Warming and Altered Precipitation on Plant and Nutrient Dynamics of a New England Salt Marsh. M.S.:82.
Chaisson C..  2012.  Factors influencing stem density in creekbank Spartina alterniflora in a New England salt marsh. BA:24.
Kearns P..  2017.  Factors that affect the composition and activity of salt marsh microbial communities: the effect of nutrient loading and diel cycles. PhD
Sturdy L.  2018.  Herbivory and Predation Patterns in Salt Marsh Habitats of Varying Size and Varying Distribution of Spartina alterniflora and S. patens . BS
Lemay L.E..  2007.  The impact of drainage ditches on salt marsh flow patterns, sedimentation and morphology: Rowley River, Massachusetts. M.S.

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