PIE LTER Publications
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Ecosystem service preferences and priorities for residential landscapes: Homogeneity and heterogeneity across diverse cities. . Urban Ecosystems.
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2015. Ecosystem service preferences and priorities for residential landscapes: Homogeneity and heterogeneity across diverse cities. . Urban Ecosystems.
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2015. Ecological Variability in Space and Time: Insights Gained from the US LTER Program . BioSciences. 53:57-67.
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2003. Ecological Homogenization of Urban America. Frontiers in Ecology and Environment. :74-81.
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2014. Ecogeomorphology of Salt Marshes. Treatise on Geomorphology (Second Edition). :445–462.
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2022. Dynamics of Marsh‐Derived Sediments in Lagoon‐Type Estuaries. Journal of Geophysical Research: Earth Surface. 125
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2020. Drainage basins, river systems, and anthropogenic change: the Chinese example. Asian Change in the Context of Global CHange: Impacts of Natural and Anthropogenic Changes in Asia on Global Biogeochemical Cycles. :210-244.
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1998. Divergence of Sediment Fluxes Triggered by Sea‐Level Rise Will Reshape Coastal Bays. Geophysical Research Letters. 47
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2020. Determinants of community compositional change are equally affected by global change. Ecology Letters. 24:1892–1904.
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2021. Determinants of community compositional change are equally affected by global change. Ecology Letters. 24:1892–1904.
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2021. Denitrification and the stoichiometery of nutrient regeneration in Waquoit Bay, MA. Estuaries. 25:272-281.
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2002. Cross-habitat access modifies the ‘trophic relay’ in New England saltmarsh ecosystems. Food Webs. 29:e00206.
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2021. .
2014. Controls on the variability of organic matter and dissolved inorganic carbon age in northeast U.S. rivers. Marine Chemistry. 92:353-366.
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2004. Consumer control and abiotic stresses constrain coastal saltmarsh restoration. Journal of Environmental Management. 274:111110.
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2020. Consumer control and abiotic stresses constrain coastal saltmarsh restoration. Journal of Environmental Management. 274:111110.
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2020. .
1999. Comparison of the fate of dissolved organic matter in two coastal systems: Hog Island Bay, VA (USA) and Plum Island Sound, MA (USA). School of Marine Science. M.S.:89.
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2002. Climate Change Implications for Tidal Marshes and Food Web Linkages to Estuarine and Coastal Nekton. Estuaries and Coasts. 44:1637–1648.
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2021. Climate Change Implications for Tidal Marshes and Food Web Linkages to Estuarine and Coastal Nekton. Estuaries and Coasts. 44:1637–1648.
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2021. Classification mapping of salt marsh vegetation byflexible monthly NDVItime-series using Landsat imagery. Estuarine and Coastal Shelf Science. 213:61-80.
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2018. 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.
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2019. Building a database of historic land cover to detect landscape change.. Biological Bulletin. 205:257-258.
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2003. Biotic and abiotic factors control the geomorphic characteristics of channel networks in salt marshes. Limnology and Oceanography. 67:89–101.
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2022. Biodiversity–productivity relationships are key to nature-based climate solutions. Nature Climate Change. 11:543–550.
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2021.