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Journal of Experimental Biology, ISSN 0022-0949, 05/2004, Volume 207, Issue 11, pp. 1825 - 1841
Journal Article
Journal of Experimental Biology, ISSN 0022-0949, 02/2012, Volume 215, Issue 4, pp. 671 - 684
Journal Article
Journal of Experimental Biology, ISSN 0022-0949, 09/2004, Volume 207, Issue 19, pp. 3265 - 3279
Journal Article
Integrative and comparative biology, ISSN 1557-7023, 2010, Volume 50, Issue 6, pp. 1140 - 1154
Journal Article
Journal of Experimental Biology, ISSN 0022-0949, 10/2017, Volume 220, Issue 20, pp. 3632 - 3640
Fish live in a complex world and must actively adapt their swimming behavior to a range of environments. Most studies of swimming kinematics focus on... 
Fish swimming | 3D kinematics | Anguilliform | Torsion | SWIMMING SPEED | AQUATIC VERTEBRATES | HYDRODYNAMICS | FIN | MECHANICS | EVOLUTION | SUNFISH LEPOMIS-MACROCHIRUS | STIFFNESS | BIOLOGY | MORPHOLOGY | KINEMATICS | Animal swimming | Intertidal zonation | Research | Behavior | Fishes | Analysis | Locomotion | Twisting | Habitats | Swimming behavior | Kinematics | Fish | Swimming | Stiffness | Species | Tails | Elongation
Journal Article
Experiments in fluids, ISSN 1432-1114, 2007, Volume 43, Issue 5, pp. 701 - 712
Journal Article
Journal of experimental biology, ISSN 0022-0949, 2018, Volume 221, Issue 8, pp. jeb175166 - jeb175166
Fish use multiple sensory systems, including vision and their lateral line system, to maintain position and speed within a school. Although previous studies... 
Neuromast | Fish | Hair cell | Lateral line system | Schooling behavior | FISH SCHOOLS | EVOLUTION | BEHAVIOR | BIOLOGY | SWIMMING KINEMATICS | PREDATORS | FLOW | Hair | Neuromasts | Hair cells | Gentamicin | Sensory systems | Ablation | Smell | Regeneration | Lateral line | Chemical treatment | Cameras | High speed cameras
Journal Article
Scientific reports, ISSN 2045-2322, 05/2019, Volume 9, Issue 1, pp. 8088 - 13
... Lepomis macrochirus during forward accelerations Margot A. B. Schwalbe1,2, Alexandra L. Boden1, Tyler N. Wise1 and eric D. tytell1 Fishes generate force to swim... 
Hypotheses | Kinematics | Mechanical properties | Swimming | Muscle function | Muscle contraction | Activity patterns | EMG
Journal Article
Journal of Experimental Biology, ISSN 0022-0949, 03/2015, Volume 218, Issue 5, pp. 786 - 792
In their natural environment, fish must swim stably through unsteady flows and vortices, including vertical vortices, typically shed by posts in a flow,... 
Fish swimming | Oxygen consumption | Turbulence | Respirometry | Kinematics | VORTEX STRUCTURE | FIN FUNCTION | RAINBOW-TROUT | PERFORMANCE | MANEUVERS | ENERGETICS | LOCOMOTION | TEMPERATURE | BIOLOGY | Swimming - physiology | Biomechanical Phenomena | Animals | Perciformes - physiology | Oxygen Consumption | Perturbation (Astronomy) | Bluegill | Genetic aspects | Research | Analysis | Vorticity
Journal Article
Journal of Experimental Biology, ISSN 0022-0949, 02/2012, Volume 215, Issue 3, pp. 416 - 425
Journal Article
Proceedings of the Royal Society. B, Biological sciences, ISSN 1471-2954, 12/2004, Volume 271, Issue 1557, pp. 2535 - 2540
Journal Article