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Nature Communications|November 19, 2023
Morphological evolution of bird wings follows a mechanical sensitivity gradient determined by the aerodynamics of flapping flightJonathan A Rader, Tyson L HedrickThe Journal of Experimental Biology|August 1, 2024
Turkey vultures tune their airspeed to changing air densityJonathan A Rader, Tyson L HedrickIntegrative and Comparative Biology|August 9, 2020
Functional Morphology of Gliding Flight I: Modeling Reveals Distinct Performance Landscapes Based on Soaring StrategiesLindsay D Waldrop, Yanyan He, Tyson L Hedrick, et al.Integrative and Comparative Biology|November 13, 2020
Functional Morphology of Gliding Flight II. Morphology Follows Predictions of Gliding PerformanceJonathan A Rader, Tyson L Hedrick, Yanyan He, et al.Bioinspiration & Biomimetics|July 2, 2008
Software techniques for two- and three-dimensional kinematic measurements of biological and biomimetic systemsTyson L HedrickThe Journal of Experimental Biology|November 26, 2011
Damping in flapping flight and its implications for manoeuvring, scaling and evolutionTyson L HedrickCurrent Biology : CB|March 15, 2022
Insect flight: Flies use a throttle to steerTyson L Hedrick, Bradley H DickersonScientific Reports|February 3, 2022
Combined effects of body posture and three-dimensional wing shape enable efficient gliding in flying lizardsPranav C Khandelwal, Tyson L HedrickPageof 10