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Ecology|January 3, 2019
Abyssal deposit-feeding rates consistent with the metabolic theory of ecologyJennifer M Durden, Brian J Bett, Christine L Huffard, et al.
The Journal of Experimental Biology|July 15, 2011
Deep-sea echinoderm oxygen consumption rates and an interclass comparison of metabolic rates in Asteroidea, Crinoidea, Echinoidea, Holothuroidea and OphiuroideaSarah Jane Murty Hughes, Henry A Ruhl, Lawrence E Hawkins, et al.
Global Change Biology|March 21, 2017
Big in the benthos: Future change of seafloor community biomass in a global, body size-resolved modelAndrew Yool, Adrian P Martin, Thomas R Anderson, et al.
Plos One|December 5, 2013
Feeding preferences of abyssal macrofauna inferred from in situ pulse chase experimentsRachel M Jeffreys, Ciara Burke, Alan J Jamieson, et al.
Global Change Biology|January 3, 2014
Global reductions in seafloor biomass in response to climate changeDaniel O B Jones, Andrew Yool, Chih-Lin Wei, et al.
Nature|August 6, 2025
In situ light-field imaging of octopus locomotion reveals simplified controlKakani Katija, Christine L Huffard, Paul L D Roberts, et al.
Science (New York, N.Y.)|June 26, 2007
Free-drifting icebergs: hot spots of chemical and biological enrichment in the Weddell SeaKenneth L Smith, Bruce H Robison, John J Helly, et al.
Ecology|July 22, 2014
Links between deep-sea respiration and community dynamicsHenry A Ruhl, Brian J Bett, Sarah J M Hughes, et al.
Conservation Biology : the Journal of the Society for Conservation Biology|March 13, 2019
Monitoring mosaic biotopes in a marine conservation zone by autonomous underwater vehicleNoëlie M A Benoist, Kirsty J Morris, Brian J Bett, et al.
Scientific Reports|September 30, 2016
Landscape-scale spatial heterogeneity in phytodetrital cover and megafauna biomass in the abyss links to modest topographic variationKirsty J Morris, Brian J Bett, Jennifer M Durden, et al.
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