This five-minute video shows the January 5, 2023 flooding on North San Pedro Road in China Camp State Park, San Rafael California during an atmospheric river event. The road also floods during winter king tides that raise water levels in San Francisco Bay.
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A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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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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A project team at the San Francisco Bay NERR is researching road modification options for a flood-prone stretch of North San Pedro Road, which runs through China Camp State Park in San Rafael.
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A project team at the San Francisco Bay NERR is working with various stakeholders to design a road modification project in China Camp State Park. Road modification is necessary for the community to maintain road access to and through the park as sea level rise continues to threaten low-
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China Camp State Park is one of the few remaining ecologically intact landscapes of the San Francisco Estuary, but the region is becoming increasingly vulnerable to sea-level rise.
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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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Project Lead Nikki Dix (Guana Tolomato Matanzas National Estuarine Research Reserve) gives a 5-minute introduction to "Refining Techniques for High-frequency Monitoring of Chlorophyll Alpha in the NERRS," a catalyst project funded in 2020 by the NERRS Science Collaborative.
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This video was created by two high school students from the Alaska Native village of Tyonek, documenting their communities groundwater uses, and represents one output from engaging with students from a 2017 collaborative research project.
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eDNA (environmental DNA) refers to the genetic material found in an environmental sample (water or sediment). eDNA comes from feces, gametes, scales, and cells that an organism sheds, and is easily collected from water and sediment samples.