K. Erickson
11 Papers
1 Citations
K. Erickson is an academic researcher. The author has contributed to research in topics: Environmental science & Biology. The author has an hindex of 2, co-authored 6 publications.
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Papers
Linking habitat interactions and biodiversity within seascapes
Ana B. Bugnot,Katherine A. Dafforn,Ross A. Coleman,Megan Ramsdale,Jayden T. Gibbeson,K. Erickson,Ana Vila-Concejo,Will F. Figueira,Paul E. Gribben +8 more
TL;DR: In this article , the authors explored the relationship between proximity to oyster reefs and composition and functionality of infaunal communities and explored the potential mechanisms behind those relationships, finding that sediment close to reefs had consistently greater amounts of labile organic matter, which was positively related to the number of taxa and total abundance of infauna.
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Optimising sampling of fish assemblages on intertidal reefs using remote underwater video
TL;DR: In this paper , the authors identified the optimal subsampling method to assess fish assemblages on intertidal oyster reefs using RUV footage and bootstrapping techniques.
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The influence of oyster reefs and surrounding sediments on nitrogen removal - An in-situ study along the East coast of Australia.
Giulia Filippini,Ana B. Bugnot,Angus J. P. Ferguson,Paul E. Gribben,Julia Palmer,K. Erickson,Katherine A. Dafforn +6 more
TL;DR: This in-situ study along Australia's East coast reveals oysters significantly contribute to nitrogen removal, particularly in dark conditions and siltier sites, with rates up to 23 times higher than sediments, highlighting the importance of reef-oyster interactions in aquatic nitrogen cycling.
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Ecomorphodynamics of oyster reefs and their influence on oyster reef morphology
Francesca Roncolato,Thomas E. Fellowes,Stephanie Duce,Carolina Mora,Oskar Johansson,Indiana Stratchan,Ana Bugnot,K. Erickson,Will Figueira,Paul E. Gribben,Christopher Pine,Bree Morgan,Ana Vila-Concejo +12 more
TL;DR: This study investigates the ecomorphodynamics of oyster reefs in microtidal estuaries, relating reef morphology to hydrodynamic conditions and wave dissipation, and proposes an ecomorphodynamic model to inform reef restoration under climate change conditions.
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Nitrogen-cycling genes in oyster reefs and surrounding sediments: Relationships with environmental factors and respective nitrogen rates
Giulia Filippini,Ana B. Bugnot,Deepa R. Varkey,Nachshon Siboni,Paul E. Gribben,K. Erickson,Julia Palmer,Katherine A. Dafforn +7 more
TL;DR: This study investigates nitrogen cycling in oyster reefs along Australia's East coast, finding higher denitrification gene abundances in oyster shell biofilms and correlations with environmental factors, but no relationship with nitrogen rates.
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