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Resources

Resources

A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.

Displaying 1 - 10 of 35
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About the project

Through a 2020 catalyst project, the Heʻeia and Kachemak Bay Reserves worked to advance the equitable representation of cultural ecosystem services in estuary stewardship by providing practical information and opportunities for facilitated exchange.

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Cultural ecosystem services (CES), one of four main categories of ecosystem services, are often described as the non-material benefits that humans receive from their interactions with the environment.

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This table summarizes the key findings related to the fish capture, transport and husbandry practices tested in the 2020 catalyst project led by the Kachemak Bay Reserve to catalyze future research on the mechanisms of paralytic shellfish toxin transfer from forage fish to upper trophic populations.

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Staff from the Kachemak Bay NERR expanded research collaborations and completed proof of concept activities to catalyze future research on the mechanisms of paralytic shellfish toxin transfer from forage fish to upper trophic populations– an increasing concern after statewide seabird die-offs and

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Poster: Drones can revolutionize research and monitoring…can’t they? (NERRS/NERRA Annual Meeting 2020)

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Project Lead Brandon Puckett (North Carolina National Estuarine Research Reserve) gives an introduction to "Bridging the Gap between Quadrats and Satellites: Assessing Utility of Drone-based Imagery to Enhance Emergent Vegetation Biomonitoring," aka "Drone the SWMP," a catalyst project funded in

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Monitoring plays a central role in detecting climate and anthropogenic stressors and associated changes in wetlands. There is a need for wetland monitoring programs to bridge the gap between ground-based surveys, which can miss important spatial heterogeneity and cause wetland disturbance, a

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With funding from the NERRS Science Collaborative, scientists from 12 biogeographically diverse Reserves compared fluorescence measurements taken by the YSI EXO TAL sensor to extracted chlorophyll concentrations processed in the lab.

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Standardized protocols for sensor-based chlorophyll monitoring are now available for use by staff around the system to implement high frequency chlorophyll monitoring at their reserves.

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Poster presented at the November 2020 NERRS Annual Meeting - Silas Tanner Poster presented at the February 2021 GTMNERR State of the Reserve Sympos