Mangroves and other habitats in Rookery Bay National Estuarine Research Reserve have been changing as a result of chronic stressors and severe hurricanes in recent years.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This training manual provides a step-by-step guide to create habitat maps using WorldView and Landsat satellite imagery.
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This story map explains mangrove habitat change at the Rookery Bay National Estuarine Research Reserve from 2010-2018, illustrating mangrove damage and recovery from Hurricane Irma.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the February 2020 webinar Resilience Dialogues: Strategies for Conflict Management in Collaborative Science.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the December 2019 webinar Leveraging NERRS System-Wide Monitoring Program Data for Wetland Research and Management.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the July 2019 webinar Mapping the Effects of Long-term Hydrologic Stress, Sea-level Rise, and Hurricane Irma on Coastal Habitats.
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This project overview describes a project led by Elkorn Slough National Estuarine Research Reserve to communicate the results of a recent national synthesis of NERR Sentinel Site data on marsh resilience to sea level rise.
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This project overview describes a 2013 Collaborative Research project that developed a protocol to accurately measure suspended sediment concentrations in tidal marshes, enhancing understanding of marsh accretion and informing marsh conservation and restoration.
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This project overview describes a 2011 Collaborative Research project that developed a science-based framework for stakeholders to use in making decisions about water resource management in the Rookery Bay Estuary.
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This document summarizes a tool developed by the NERRS to evaluate and compare the ability of tidal marshes to thrive as sea level rises.