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Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|May 3, 2007
Locomotion in diving elephant seals: physical and physiological constraintsRandall W Davis, Daniel WeihsJournal of the Royal Society, Interface|August 4, 2017
Hydrodynamic advantages of swimming by salp chainsKelly R Sutherland, Daniel WeihsJournal of Theoretical Biology|August 3, 2013
Hydrodynamics and energy-saving swimming techniques of Pacific bluefin tunaTsutomu Takagi, Yumiko Tamura, Daniel WeihsThe Journal of Experimental Biology|May 15, 2004
How do cormorants counter buoyancy during submerged swimming?Gal Ribak, Daniel Weihs, Zeev AradBioinspiration & Biomimetics|July 11, 2013
Why are there no long distance jumpers among click-beetles (Elateridae)?Gal Ribak, Oded Mordechay, Daniel WeihsThe Journal of Experimental Biology|October 11, 2005
Submerged swimming of the great cormorant Phalacrocorax carbo sinensis is a variant of the burst-and-glide gaitGal Ribak, Daniel Weihs, Zeev AradThe Journal of Experimental Biology|January 27, 2025
Towards a standard application of the Reynolds number in studies of aquatic animal locomotionDaniel Weihs, Arash Farsani, Roi GurkaThe Journal of Experimental Biology|September 9, 2008
Consequences of buoyancy to the maneuvering capabilities of a foot-propelled aquatic predator, the great cormorant (Phalcrocorax carbo sinensis)Gal Ribak, Daniel Weihs, Zeev AradFish Physiology and Biochemistry|May 17, 2011
Assessing possible effects of fish-culture systems on fish swimming: the role of stability in turbulent flowsPaul W Webb, Aline J CotelIntegrative and Comparative Biology|July 5, 2015
Living in a Turbulent World-A New Conceptual Framework for the Interactions of Fish and EddiesAline J Cote, Paul W WebbPageof 3