This presentation was developed for a public lecture series sponsored by the University of Texas at Austin Marine Science Institute and the Mission-Aransas NERR a part of the 2020 catalyst project to integrate acoustic monitoring into multiple reserve programs in the southeast region.This presentation describes the acoustic monitoring framework with applications to research, stewardship, and education, co-produced with the North Inlet-Winyah Bay, Rookery Bay, and Mission-Aransas NERRs, along with other regional management users.
Resources
Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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Project Lead Chris Biggs gives a 5-minute introduction to "Listen In: Acoustic Monitoring of Estuarine Communities Facing Ecosystem Change," a catalyst project funded in 2020 by the NERRS Science Collaborative.
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A peer-reviewed article describing several of the biosensor tools and the design process used to build them, as part of the 2021 Collaborative Research project incorporating bivalve biosensors into estuary monitoring infrastructure.
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the July 2022 webinar "Listen In: Acoustic Monitoring of Estuarine Communities Facing Ecosystem Change."
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This resource contains the presenter slides, Q&A responses, recording, and presenter bios from the April 2022 webinar "Refining Techniques for High-Frequency Monitoring of Chlorophyll."
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This tool provides an overview of acoustic monitoring in aquatic ecosystems, including sources of sound, metrics for measurement, data collection and analysis, and applications for habitat assessment, stewardship, and education.
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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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This 2021 article which appeared in Ecological Engineering explores the potential for large-scale breakwaters to preserve fringing marsh vegetation in high wave energy environments.