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Relationships between ecosystem properties and sea-level rise vulnerability of tidal wetlands of the U.S. Mid-Atlantic.
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- Environmental Monitoring & Assessment, 2022, v. 194, n. 4, p. 1, doi. 10.1007/s10661-022-09949-y
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- Article
Influence of Physical Manipulations on Short-Term Salt Marsh Morphodynamics: Examples from the North and Mid-Atlantic Coast, USA.
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- Estuaries & Coasts, 2016, v. 39, n. 2, p. 423, doi. 10.1007/s12237-015-0013-9
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- Article
Erratum to: Influence of Physical Manipulations on Short-Term Salt Marsh Morphodynamics: Examples from the North and Mid-Atlantic Coast, USA.
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- 2016
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- Publication type:
- Erratum
Nitrogen Pools of Macrophyte Species in a Coastal Lagoon Salt Marsh: Implications for Seasonal Storage and Dispersal.
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- Estuaries & Coasts, 2011, v. 34, n. 3, p. 470, doi. 10.1007/s12237-011-9379-5
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- Article
Geomorphic influences on the contribution of vegetation to soil C accumulation and accretion in Spartina alterniflora marshes.
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- Biogeosciences, 2018, v. 15, n. 1, p. 379, doi. 10.5194/bg-15-379-2018
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- Article
Seed bank of seasonally flooded grassland: experimental simulation of flood and post-flood.
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- Aquatic Ecology, 2018, v. 52, n. 1, p. 93, doi. 10.1007/s10452-017-9647-y
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- Article
Seed Dispersal and Seedling Emergence in a Created and a Natural Salt Marsh on the Gulf of Mexico Coast in Southwest Louisiana, U.S.A.
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- Restoration Ecology, 2009, v. 17, n. 3, p. 422, doi. 10.1111/j.1526-100X.2008.00398.x
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- Article
Retreating marsh shoreline creates hotspots of high-marsh plant diversity.
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- Scientific Reports, 2019, v. 9, n. 1, p. N.PAG, doi. 10.1038/s41598-019-42119-8
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- Article
Differential population response of allocation, phenology, and tissue chemistry in Spartina alterniflora.
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- Plant Ecology, 2011, v. 212, n. 11, p. 1873, doi. 10.1007/s11258-011-9960-9
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- Article
Factors influencing blue carbon accumulation across a 32-year chronosequence of created coastal marshes.
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- Ecosphere, 2019, v. 10, n. 8, p. 1, doi. 10.1002/ecs2.2828
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- Article
Brackish marshes erode twice as fast as saline marshes in the Mississippi Delta region.
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- Earth Surface Processes & Landforms, 2021, v. 46, n. 9, p. 1739, doi. 10.1002/esp.5108
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- Article
Elevated temperature and nutrients lead to increased N<sub>2</sub>O emissions from salt marsh soils from cold and warm climates.
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- Biogeochemistry, 2024, v. 167, n. 1, p. 21, doi. 10.1007/s10533-023-01104-0
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- Article
Competitive reversal between plant species is driven by species‐specific tolerance to flooding stress and nutrient acquisition during early marsh succession.
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- Journal of Applied Ecology, 2019, v. 56, n. 9, p. 2236, doi. 10.1111/1365-2664.13458
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- Article
Do neighbours matter? The effect of single‐ and mixed‐species sowing density on seed germination of annual wetland plants.
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- Applied Vegetation Science, 2021, v. 24, n. 3, p. 1, doi. 10.1111/avsc.12602
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- Article
Salt Water Exposure Exacerbates the Negative Response of Phragmites australis Haplotypes to Sea-Level Rise.
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- Plants (2223-7747), 2024, v. 13, n. 6, p. 906, doi. 10.3390/plants13060906
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- Article
Exchange of Nitrogen through an Urban Tidal Freshwater Wetland in Philadelphia, Pennsylvania.
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- Journal of Environmental Quality, 2013, v. 42, n. 2, p. 584, doi. 10.2134/jeq2012.0287
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- Article
Geomorphic influences on the contribution of vegetation to soil C accumulation and accretion in Spartina alterniflora marshes.
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- Biogeosciences Discussions, 2017, p. 1, doi. 10.5194/bg-2017-268
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- Article
Role of Tidal Wetland Stability in Lateral Fluxes of Particulate Organic Matter and Carbon.
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- Journal of Geophysical Research. Biogeosciences, 2019, v. 124, n. 5, p. 1, doi. 10.1029/2018JG004920
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- Article
Benthic Biofilm Potential for Organic Carbon Accumulation in Salt Marsh Sediments.
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- Wetlands, 2022, v. 42, n. 1, p. 1, doi. 10.1007/s13157-021-01528-0
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- Article
High Reinvasion Potential of Phragmites australis in a Delaware River (USA) Tidal Freshwater Marsh Following Chemical Treatment: the Role of the Seedbank.
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- Wetlands, 2021, v. 41, n. 1, p. 1, doi. 10.1007/s13157-021-01398-6
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- Article
Do Aquatic Macrophytes Limit the Invasion Potential of Exotic Species in Pantanal Grasslands?
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- Wetlands, 2020, v. 40, n. 1, p. 135, doi. 10.1007/s13157-019-01168-5
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- Article
Spartina patens Productivity and Soil Organic Matter Response to Sedimentation and Nutrient Enrichment.
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- Wetlands, 2018, v. 38, n. 6, p. 1233, doi. 10.1007/s13157-018-1030-9
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- Article
Salt Marsh Carbon Pool Distribution in a Mid-Atlantic Lagoon, USA: Sea Level Rise Implications.
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- Wetlands, 2011, v. 31, n. 1, p. 87, doi. 10.1007/s13157-010-0139-2
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- Article
Organic Matter and Nutrient Cycling in Coastal Wetlands and Submerged Aquatic Ecosystems in an Age of Rapid Environmental Change—The Anthropocene.
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- Journal of Marine Science & Engineering, 2022, v. 10, n. 8, p. 1096, doi. 10.3390/jmse10081096
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- Article
NYMPHOIDES HUMBOLDTIANA (MENYANTHACEAE) IN FLORIDA (U.S.A.) VERIFIED BY DNA DATA.
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- Journal of the Botanical Research Institute of Texas, 2018, v. 12, n. 1, p. 257, doi. 10.17348/jbrit.v12.i1.934
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- Article
Patterns of seed bank and vegetation diversity along a tidal freshwater river.
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- American Journal of Botany, 2015, v. 102, n. 12, p. 1996, doi. 10.3732/ajb.1500314
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- Article
Seasonal flooding, topography, and organic debris interact to influence the emergence and distribution of seedlings in a tropical grassland.
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- Biotropica, 2018, v. 50, n. 4, p. 616, doi. 10.1111/btp.12550
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- Article
Sediment Accumulation, Elevation Change, and the Vulnerability of Tidal Marshes in the Delaware Estuary and Barnegat Bay to Accelerated Sea Level Rise.
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- Estuaries & Coasts, 2022, v. 45, n. 2, p. 413, doi. 10.1007/s12237-021-00972-9
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- Article