PIE LTER Publications
A test of biological trait analysis with nematodes and an anthropogenic stressor. Environmental Monitoring and Assessment. 188
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2016. Thermodynamics of Marine Biogeochemical Cycles: Lotka Revisited. Annual Review of Marine Science. 8:333-356.
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2016. Asynchrony among local communities stabilises ecosystem function of metacommunities. Ecology Letters. 20:1534–1545.
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2017. Bottom-up control of parasites. Ecosphere. 8
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2017. The effect of evaporation on the erodibility of mudflats in a mesotidal estuary. Estuarine, Coastal and Shelf Science. 194:118-127.
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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.
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2017. Methods to summarize change among land categories across time intervals. Journal of Land Use Science. 12:218-230.
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2017. Quantifying Site-Specific Physical Heterogeneity Within an Estuarine Seascape. Estuaries and Coasts. 40:1385-1397.
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2017. Rules to write mathematics to clarify metrics such as the land use dynamic degrees. Landscape Ecology. 32:2249-2260.
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2017. Save Our Stream. LTER Schoolyard Series. :30.
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2017. Sea level rise may increase extinction risk of a saltmarsh ontogenetic habitat specialist. Ecology and Evolution.
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2017. Shallow ponds are heterogeneous habitats within a temperate salt marsh ecosystem. Journal of Geophysical Research: Biogeosciences. 122
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2017. Spatially integrative metrics reveal hidden vulnerability of microtidal salt marshes. Nature Communications. 8
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2017. Stage-discharge relationship in tidal channels. Limnology and Oceanography. 15:394-407.
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2017. Using geomorphology and animal “individuality” to understand ‘scape-scale predator distributions. M.S.
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2017. Variability of Mya arenaria growth along an environmental gradient in the Plum Island Sound estuary, Massachusetts, USA. Wetlands Ecology and Management. 25:235-256.
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2017. Ambient changes exceed treatment effects on plant species abundance in global change experiments. Global Change Biology. 24:5668–5679.
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2018. 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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