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Integrative and Comparative Biology|May 13, 2025
Cnidarian circadian clocks model how animals find predictability in a complex worldAnn M Tarrant, Cory A BergerElife|April 6, 2023
Sensory conflict disrupts circadian rhythms in the sea anemone Nematostella vectensisCory A Berger, Ann M TarrantEcology and Evolution|September 4, 2024
Nutritional condition drives spatial variation in physiology of Antarctic lipid-storing copepodsCory A Berger, Deborah K Steinberg, Ann M TarrantMarine Genomics|February 2, 2021
De novo transcriptome assembly of the Southern Ocean copepod Rhincalanus gigas sheds light on developmental changes in gene expressionCory A Berger, Deborah K Steinberg, Nancy J Copley, et al.Molecular Ecology|May 9, 2024
Comparative analysis of the molecular starvation response of Southern Ocean copepodsCory A Berger, Deborah K Steinberg, Louise A Copeman, et al.Marine Environmental Research|March 6, 2022
Nematostella vectensis exhibits an enhanced molecular stress response upon co-exposure to highly weathered oil and surface UV radiationCory A Berger, Collin P Ward, Sibel I Karchner, et al.Ecotoxicology (London, England)|January 20, 2007
Hormonal signaling in cnidarians: do we understand the pathways well enough to know whether they are being disrupted?Ann M TarrantIntegrative and Comparative Biology|June 17, 2011
Endocrine-like Signaling in Cnidarians: Current Understanding and Implications for EcophysiologyAnn M TarrantAnnual Review of Marine Science|November 5, 2016
The Physiology and Ecology of Diapause in Marine CopepodsMark F Baumgartner, Ann M TarrantMolecular Biology and Evolution|May 25, 2010
Correlated evolution of androgen receptor and aromatase revisitedAdam M Reitzel, Ann M TarrantPageof 6