PIE LTER Publications
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2023.
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2001.
Limited effects of nutrient enrichment on bacterial carbon sources in salt marsh tidal creek sediments. Marine Ecological Progress Series. 544:107-130.
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2016. Linking land change model evaluation to model objective for the assessment of land cover change impacts on biodiversity. Landscape Ecology. 36:2707–2723.
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2021. The Long-Term Ecological Research community metadata standardisation project: a progress report.. International Journal of Metadata, Semantics and Ontologies. 4:141-153.
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2018.
Local scale carbon budgets and mitigation opportunities for the Northeastern United States.. BioScience. 62:23-38.
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2012. Land-use change model validation by a ROC method for the Ipswich watershed, Massachusetts, USA. Agriculture, Ecosystems & Environment. 85:239-248.
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2001. Land transition estimates from erroneous maps. Journal of Land Use Science. 5:31-44.
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2010. Long-Term Trends in Ecological Systems: A Basis for Understanding Responses to Global Change. . Technical Bulletin Number 1931:396.
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2002.
Long-term nutrient enrichment elicits a weak density response by saltmarsh meiofauna. Hydrobiologia. 713:97-114.
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1999. Long-term variations in water discharge and sediment load of the Pearl River Estuary: Implications for sustainable development of the Greater Bay Area. Frontiers in Marine Science. 9
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2022. Local variability in erosional resistance affects large scale morphodynamic response of salt marshes to wind waves. Geophysical Research Letters. 42
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2016. Linking biogeochemical processes to higher trophic levels. Estuarine Science, A Synthetic Approach to Research and Practice. :299-246.
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2000. Limits on the adaptability of coastal marshes to rising sea level. Geophysical Research Letters. 37
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2009. Large-scale manipulations reveal that top-down and bottom-up controls interact to alter habitat utilization by saltmarsh fauna. Marine Ecology Progress Series. 377:33-41.
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2009. Long-Term Changes in Concentration and Yield of Riverine Dissolved Silicon From the Poles to the Tropics. Global Biogeochemical Cycles. 37:e2022GB007678.
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2023. Lateral Marsh Edge Erosion as a Source of Sediments for Vertical Marsh Accretion. Journal of Geophysical Research.
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2018.