Area of research
Global and Planetary Change · Ecology
Research interest
Research interests include Oceanography, Environmental science, Methylmercury, Pelagic zone, Trophic level, and Deep sea.
Assessment of scientific gaps related to the effective environmental management of deep-seabed mining
Mercury isotopic evidence for the importance of particles as a source of mercury to marine organisms
Microbiomes of Hadal Fishes across Trench Habitats Contain Similar Taxa and Known Piezophiles
Midwater ecosystems must be considered when evaluating environmental risks of deep-sea mining
Climate change considerations are fundamental to management of deep‐sea resource extraction
Deep-Sea Misconceptions Cause Underestimation of Seabed-Mining Impacts
Seasonal dynamics of midwater zooplankton and relation to particle cycling in the North Pacific Subtropical Gyre
Mercury stable isotopes in flying fish as a monitor of photochemical degradation of methylmercury in the Atlantic and Pacific Oceans
Deep zooplankton rely on small particles when particle fluxes are low
Microbial Community Diversity Within Sediments from Two Geographically Separated Hadal Trenches
Mercury Cycling in the North Pacific Subtropical Gyre as Revealed by Mercury Stable Isotope Ratios
Seasonal and spatial changes in carbon and nitrogen fluxes estimated using 234Th:238U disequilibria in the North Pacific tropical and subtropical gyre
Carbon, Nitrogen, and Mercury Isotope Evidence for the Biogeochemical History of Mercury in Hawaiian Marine Bottomfish
Molecular adaptation to high pressure in cytochrome P450 1A and aryl hydrocarbon receptor systems of the deep-sea fish Coryphaenoides armatus
Near-island biological hotspots in barren ocean basins
Depth as a driver of evolution in the deep sea: Insights from grenadiers (Gadiformes: Macrouridae) of the genus Coryphaenoides
Trophic position estimates of marine teleosts using amino acid compound specific isotopic analysis
Diets of five important predatory mesopelagic fishes of the central North Pacific
Global Trophic Position Comparison of Two Dominant Mesopelagic Fish Families (Myctophidae, Stomiidae) Using Amino Acid Nitrogen Isotopic Analyses