This article, published in Frontiers in Ecology and the Environment in 2018, synthesizes oyster restoration projects since 1964 on the US Atlantic and Gulf coasts and suggests a restoration paradigm to prioritize investment in sites that maximize economic and ecological benefits and minimize construction costs.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This factsheet discusses the potential for gabion-breaks and other living shorelines to dissipate boat wakes and protect shorelines.
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This slide deck summarizes findings from a catalyst project that modeling oyster population dynamics at GTM Reserve, Florida.
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This report presents the outcomes of a community stakeholder process in which participants engaged in an expert-facilitated and community-based approach to develop sea level rise adaptation options for a low-lying road in China Camp State Park, along San Francisco Bay, CA.
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This video illustrates a flooding event that affected a shoreline section of North San Pedro Road, in northern California. In this case, a large rain storm and run-off from the watershed could not drain through undersized culverts and led to road flooding.
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This video illustrates a flooding event that affected a shoreline section of North San Pedro Road, in northern California. In this case, a large rain storm and run-off from the watershed could not drain through undersized culverts and led to road flooding.
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This experimental study by Ada Bersoza Hernández and Christine Angelini informs the design of more durable wooden stabilization structures in coastal environments.
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This video describes a 2015 Collaborative Research project at the Guana Tolomato Matanzas Reserve where researchers installed a new living shoreline design to protect shorelines from boat wakes.
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This website contains information and resources related to a 2013 Collaborative Research project studying sediment dynamics in tidal marshes in San Francisco Bay.
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This article, published in Sustainability in 2018, characterizes the boat wake climate in Florida's Intracoastal Waterway, assesses the area's bathymetry, and anticipates the effects of experimental living shorelines (natural breakwall and oyster restoration structures) on facilitating sediment deposition and slowing vegetation retreat.