Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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Factsheet
This factsheet, written as a resource for a three-year Collaborative Research project, describes measures and proposed management plans for marsh resilience to create a long-term monitoring programs and national-level synthesis efforts.
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Keywords: marsh resilience, monitoring, sea level rise
Reserves: ACE Basin, SC, Apalachicola, FL, Chesapeake Bay, MD, Chesapeake Bay, VA, Delaware, Elkhorn Slough, CA, Grand Bay, MS, Great Bay, NH, Guana Tolomato Matanzas, FL, Hudson River, NY, Jacques Cousteau, NJ, Kachemak Bay, AK, Mission Aransas, TX, Narragansett Bay, RI, North Carolina, North Inlet-Winyah Bay, SC, Padilla Bay, WA, South Slough, OR, Tijuana River, CA, Waquoit Bay, MA, Wells, ME
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Multimedia
Through data-collection, mapping, and modeling efforts, a collaborative research project has increased clarity about marsh habitat change to inform mosquito control and coastal restoration efforts in New Jersey.
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Keywords: mosquito, management, eDNA, wetland resilience
Reserves: Jacques Cousteau, NJ
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Data
This dataset comprises the data collected and produced as part of the 2016 research project Investigating the Interconnectedness of Climate Change, Nuisance Mosquitoes, and Resilience of Coastal Salt Marsh Systems.
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Keywords: management, eDNA, mosquito, wetland, sea level rise
Reserves: Jacques Cousteau, NJ
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Webinar Summary
This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the February 2021 webinar Understanding the Interconnectedness of Climate Change, Salt Marsh Resilience, and Nuisance Mosquitoes.
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Keywords: management, eDNA, mosquito, wetland resilience
Reserves: Jacques Cousteau, NJ
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Data
About this Project
Thin-layer placement (TLP) is an emergent climate adaptation strategy that mimics natural deposition processes in tidal marshes by adding a small amount of sediment on top of marsh in order to maintain elevation relative to sea level rise.
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Keywords: thin-layer sediment, wetland resilience, adaptation
Reserves: Chesapeake Bay, MD, Chesapeake Bay, VA, Elkhorn Slough, CA, Great Bay, NH, Narragansett Bay, RI, North Carolina, San Francisco Bay, CA, Waquoit Bay, MA
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Tool
This advisory committee charter, developed for a National Estuarine Research Reserve project to evaluate a thin-layer placement as a strategy for marsh resilience, offers an example for engaging diverse end users in collaborative research.
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Keywords: thin-layer sediment, marsh resilience, adaptation
Reserves: Chesapeake Bay, MD, Chesapeake Bay, VA, Elkhorn Slough, CA, Great Bay, NH, Narragansett Bay, RI, North Carolina, San Francisco Bay, CA, Waquoit Bay, MA
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Multimedia
This story map and K-12 activity invites students to explore coastal marsh vulnerability to sea level rise and a collaborative experiment to enhance marsh resilience at the Chesapeake Bay National Estuarine Research Reserve in Virginia.
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Keywords: thin-layer sediment, wetland resilience, adaptation
Reserves: Chesapeake Bay, MD, Chesapeake Bay, VA, Elkhorn Slough, CA, Great Bay, NH, Narragansett Bay, RI, North Carolina, San Francisco Bay, CA, Waquoit Bay, MA
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Website
This 2018 catalyst project streamlined and enhanced mapping and decision support tools to help New Jersey coastal communities prepare for sea level rise and extreme storms.
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Keywords: resilience, flooding, decision making, sea level rise, mosquito, wetland resilience, management
Reserves: Jacques Cousteau, NJ
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Tool
This document provides guidance on the use of thin-layer sediment placement (TLP) as a tool for tidal marsh resilience in the face of sea-level rise.
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Keywords: thin-layer sediment, wetland resilience, adaptation
Reserves: Chesapeake Bay, MD, Chesapeake Bay, VA, Elkhorn Slough, CA, Great Bay, NH, Narragansett Bay, RI, North Carolina, San Francisco Bay, CA, Waquoit Bay, MA