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For over two decades, she has focused on the mechanical design of marine invertebrates and macroalgae, especially those that thrive in one of the most physically challenging habitats on earth, the wave-swept rocky intertidal zone. Her work on the ecomechanics of mussels and their byssal attachment links materials science, fluid mechanics, organismal biology and environmental science to develop mechanistic understanding of how coastal organisms will fare in changing ocean climates.
Continuing investigations of the ecomechanics of coastal marine invertebrates and macroalgae. Recent projects in our lab include: 1) the causes and consequences of variable attachment in wild and farmed mussels, 2) the effect of multiple stressors, such as ocean acidification and increased temperature, on the performance of macroalgae and bivalves, and 3) the effect of temperature on predator-prey interactions.
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Journal of Experimental Marine Biology and Ecology (2023): 151927-151927
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PLOS climateno. 6 (2023): e0000226-e0000226
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Marine Pollution Bulletin (2023): 115609-115609
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