21 results on '"Dupont, Sam"'
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2. Developing a Multiple Driver Research Strategy Using Multiple Environmental Driver Design Lab for Experiments
3. Controlled spawning and rearing of the sea cucumber, Parastichopus tremulus
4. “Urchin pinning”: Behavioural observations reveal how hungry urchins actively prey upon their sea star predators
5. Deciphering mollusc shell production: The roles of genetic mechanisms through to ecology, aquaculture and biomimetics
6. Deciphering mollusc shell production: the roles of genetic mechanisms through to ecology, aquaculture and biomimetics
7. Global environmental changes negatively impact temperate seagrass ecosystems
8. Experimental strategies to assess the biological ramifications of multiple drivers of global ocean change-A review
9. Experimental strategies to assess the biological ramifications of multiple drivers of global ocean change—A review
10. Contrasting physiological responses to future ocean acidification among Arctic copepod populations
11. Will life find a way? Evolution of marine species under global change
12. Biogeographic variability in the physiological response of the cold‐water coralL ophelia pertusato ocean acidification
13. Selection on oxidative phosphorylation and ribosomal structure as a multigenerational response to ocean acidification in the common copepod Pseudocalanus acuspes
14. Transgenerational effects alleviate severe fecundity loss during ocean acidification in a ubiquitous planktonic copepod
15. Ocean acidification through the lens of ecological theory
16. Elevated CO2 affects embryonic development and larval phototaxis in a temperate marine fish
17. Assessing physiological tipping point of sea urchin larvae exposed to a broad range of pH
18. Proteome map of the neural complex of the tunicate Ciona intestinalis , the closest living relative to vertebrates
19. Intraspecific variability in the response of bloom‐forming marine microalgae to changed climate conditions
20. Possibility of mixed progenitor cells in sea star arm regeneration
21. Near future ocean acidification increases growth rate of the lecithotrophic larvae and juveniles of the sea star Crossaster papposus
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