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Urban evolution: the role of water. Water Resources Research. 7:4063-4087.. 2015.
Tracking evolution of urban biogeochemical cycles: past, present, and future. Biogeochemistry. 121:1-21.. 2014.
Salt marsh vegetation promotes efficient tidal channel networks. Nature Communications. 7. 2016.
Sea-level rise and storm surges structure coastal forests into persistence and regeneration niches. PLOS ONE. 14:e0215977.. 2019.
Stage-discharge relationship in tidal channels. Limnology and Oceanography. 15:394-407.. 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.. 2017.
Nutrient enrichment induces dormancy and decreases diversity of active bacteria. Nature Communications. 7. 2016.
Nutrient Enrichment Alters Salt Marsh Fungal Communities and Promotes Putative Fungal Denitrifiers. Microbial Ecology.. 2018.
Factors that affect the composition and activity of salt marsh microbial communities: the effect of nutrient loading and diel cycles. PhD. 2017.
Nutrient Enrichment Alters Salt Marsh Fungal Communities and Promotes Putative Fungal Denitrifiers. Microbial Ecology. 77:358–369.. 2019.
Habitat heterogeneity concentrates predators in the seascape: linking intermediate-scale estuarine habitat to striped bass distribution. MS. 2013.
Quantifying Site-Specific Physical Heterogeneity Within an Estuarine Seascape. Estuaries and Coasts. 40:1385-1397.. 2017.
Discontinuities concentrate mobile predators: Quantifying organism-environment interactions at a seascape scale. Ecosphere. 7. 2016.
Effect of nutrient enrichment and salinity on salt marsh invertebrates in the Plum Island Estuary.. Biological Bulletin. 207:174.. 2004.
Area method compared with Transect method to measure shoreline movement. Geocarto International. :1–22.. 2021.
Relationships Between Spartina alterniflora and Littoraria irrorata in a South Carolina Salt Marsh. Wetlands. 29:818-825.. 2009.
Variability in dimethylsulfoniopropionate (DMSP) in Spartina alterniflora and its effect on Littoraria irrorata.. Marine Ecology Progress Series. 406:47-55.. 2010.
Modeling the effects of land-use change on nitrogen biogeochemistry in the Ipswich watershed, Massachusetts. Biological Bulletin. 199:218-219.. 2000.
Latitudinal trends in Spartina alterniflora productivity and the response of coastal marshes to global change. Global Change Biology.. 2009.
Limits on the adaptability of coastal marshes to rising sea level. Geophysical Research Letters. 37. 2010.
Overestimation of marsh vulnerability to sea level rise. Nature Climate Change.. 2016.
High overall diversity and dominance of microdiverse relationships in salt marsh sulfate-reducing bacteria.. Environmental Microbiology. 6:686-698.. 2004.
Influence of marsh flooding on the abundance and growth of Fundulus heteroclitus in salt marsh creeks. Biological Bulletin. 197:299-300.. 1999.
Global-change effects on plant communities are magnified by time and the number of global-change factors imposed.. Proceedings of the National Academy of Sciences of the United States of America. 116:17867-17873.. 2019.