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Sign in to add mentorJeff C. Clements | grad student | 2020-2023 | Université de Moncton | |
(MSc student - fisheries ecology of soft-shell clams) |
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Publications
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Carryon GN, Tangorra JL. (2020) The effect of sensory feedback topology on the entrainment of a neural oscillator with a compliant foil for swimming systems. Bioinspiration & Biomimetics. 15: 046013 |
Mignano AP, Kadapa S, Tangorra JL, et al. (2019) Passing the Wake: Using Multiple Fins to Shape Forces for Swimming. Biomimetics (Basel, Switzerland). 4 |
Seth D, Flammang BE, Lauder GV, et al. (2017) Development of a vortex generator to perturb fish locomotion. The Journal of Experimental Biology |
Kahn JC, Peretz DJ, Tangorra JL. (2015) Predicting propulsive forces using distributed sensors in a compliant, high DOF, robotic fin. Bioinspiration & Biomimetics. 10: 036009 |
Esposito CJ, Tangorra JL, Flammang BE, et al. (2012) A robotic fish caudal fin: effects of stiffness and motor program on locomotor performance. The Journal of Experimental Biology. 215: 56-67 |
Tangorra J, Phelan C, Esposito C, et al. (2011) Use of biorobotic models of highly deformable fins for studying the mechanics and control of fin forces in fishes Integrative and Comparative Biology. 51: 176-189 |
Tangorra JL, Lauder GV, Hunter IW, et al. (2010) The effect of fin ray flexural rigidity on the propulsive forces generated by a biorobotic fish pectoral fin. The Journal of Experimental Biology. 213: 4043-54 |
Phelan C, Tangorra J, Lauder G, et al. (2010) A biorobotic model of the sunfish pectoral fin for investigations of fin sensorimotor control. Bioinspiration & Biomimetics. 5: 035003 |
Lauder GV, Anderson EJ, Tangorra J, et al. (2007) Fish biorobotics: kinematics and hydrodynamics of self-propulsion. The Journal of Experimental Biology. 210: 2767-80 |
Tangorra J, Anquetil P, Fofonoff T, et al. (2007) The application of conducting polymers to a biorobotic fin propulsor. Bioinspiration & Biomimetics. 2: S6-17 |