This paper details findings presented at the U.S.-Iran Symposium on Wetlands in March 2016 about the increasing watershed influence and hypo-salinity in Los Penasquitos Lagoon.
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Resources
A repository of data, publications, tools, and other products from project teams, Science Collaborative program, and partners.
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This case study profiles the 2015 Climate Scenario Planning for the Kenai Peninsula Science Transfer project led by the Tijuana River and Kachemak Bay Reserves.
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This case study includes four scenario narratives outlining a different plausible future state of a system developed by local leaders, researchers, and stakeholders on the Kenai Peninsula, Alaska.
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This 2017 article appeared in the journal Ecology, and presents findings from a study assessing the individual and synergistic effects of air temperature and salinity on Olympia oyster mortality across temporal patterns that accurately reflect the natural environment.
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This thesis, written as part of a 2016 Collaborative Research project, describes a quantitative microbial assessment of stormwater in Beaufort, North Carolina.
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This 2016 journal article was published in Proceedings of the Royal Society B. The study highlights how extreme precipitation events in 2011 may have contributed to near 100% mass mortality of wild oysters in northern San Francisco Bay.
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This journal article was published in Estuaries and Coasts in 2016, and decribes a study of how seasonal changes in temperature and salinity impact larval Olympia oyster recruitment across a range of sites and time intervals.
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This article provides a comprehensive summary of what is known about the ecological functioning of the shore zone in freshwater ecosystems.
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This article, published as part of the Hudson River Sustainable Shorelines project in 2012, reports on an effort to document the biodiversity supported by different kinds of shore zones in the Hudson River Estuary.
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https://doi.org/10.1175/JPO-D-11-063.1This article, published in the Journal of Physical Oceanography in 2012, reports on an analysis of ice on tidal hydrodynamics in the Hudson River Estuary.