Search Results - "Rosencranz, Jordan A."

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    Flooding regimes increase avian predation on wildlife prey in tidal marsh ecosystems by Thorne, Karen M., Spragens, Kyle A., Buffington, Kevin J., Rosencranz, Jordan A., Takekawa, John

    Published in Ecology and evolution (01-02-2019)
    “…Within isolated and fragmented populations, species interactions such as predation can cause shifts in community structure and demographics in tidal marsh…”
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    Thin-layer sediment addition to an existing salt marsh to combat sea-level rise and improve endangered species habitat in California, USA by Thorne, Karen M., Freeman, Chase M., Rosencranz, Jordan A., Ganju, Neil K., Guntenspergen, Glenn R.

    Published in Ecological engineering (01-10-2019)
    “…Current tidal marsh elevations and their accretion rates are important predictors of vulnerability to sea-level rise. When tidal marshes are at risk,…”
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    Multiple Stressors Influence Salt Marsh Recovery after a Spring Fire at Mugu Lagoon, CA by Brown, Lauren N., Rosencranz, Jordan A., Willis, Katherine S., Ambrose, Richard F., MacDonald, Glen M.

    Published in Wetlands (Wilmington, N.C.) (01-08-2020)
    “…This paper presents the first record of fire in Pacific coast salt marshes; the 1993 Green Meadows Fire and the 2013 Camarillo Springs Fire burned an area of…”
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    Balanced Sediment Fluxes in Southern California's Mediterranean-Climate Zone Salt Marshes by Rosencranz, Jordan A., Ganju, Neil K., Ambrose, Richard F., Brosnahan, Sandra M., Dickhudt, Patrick J., Guntenspergen, Glenn R., MacDonald, Glen M., Takekawa, John Y., Thorne, Karen M.

    Published in Estuaries and coasts (01-07-2016)
    “…Salt marsh elevation and geomorphic stability depends on mineral sedimentation. Many Mediterranean climate salt marshes along southern California, USA coast…”
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    The Role of Sediment Dynamics for Inorganic Accretion Patterns in Southern California's Mediterranean-Climate Salt Marshes by Rosencranz, Jordan A., Brown, Lauren N., Holmquist, James R., Sanchez, Yareli, MacDonald, Glen M., Ambrose, Richard F.

    Published in Estuaries and coasts (01-09-2017)
    “…Salt marsh resilience to sea-level rise depends on marsh plain elevation, tidal range, subsurface processes, as well as surface accretion, of which…”
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