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The Journal of Experimental Biology|June 28, 2022
Bats actively modulate membrane compliance to control camber and reduce dragJorn A Cheney, Jeremy C Rehm, Sharon M Swartz, et al.Plos One|May 27, 2014
Hindlimb motion during steady flight of the lesser dog-faced fruit bat, Cynopterus brachyotisJorn A Cheney, Daniel Ton, Nicolai Konow, et al.Journal of Anatomy|January 11, 2017
Diversity in the organization of elastin bundles and intramembranous muscles in bat wingsJorn A Cheney, Justine J Allen, Sharon M SwartzThe Journal of Experimental Biology|February 26, 2017
Speed-dependent modulation of wing muscle recruitment intensity and kinematics in two bat speciesNicolai Konow, Jorn A Cheney, Thomas J Roberts, et al.Journal of the Royal Society, Interface|April 3, 2015
A wrinkle in flight: the role of elastin fibres in the mechanical behaviour of bat wing membranesJorn A Cheney, Nicolai Konow, Andrew Bearnot, et al.Interface Focus|February 7, 2017
The influence of aspect ratio and stroke pattern on force generation of a bat-inspired membrane wingCosima Schunk, Sharon M Swartz, Kenneth S BreuerIntegrative and Comparative Biology|June 15, 2011
Aeromechanics in aeroecology: flight biology in the aerosphereSharon M Swartz, Kenneth S Breuer, David J WillisJournal of the Royal Society, Interface|January 11, 2013
An aeroelastic instability provides a possible basis for the transition from gliding to flapping flightOscar M Curet, Sharon M Swartz, Kenneth S BreuerBioinspiration & Biomimetics|February 7, 2013
Design and characterization of a multi-articulated robotic bat wingJoseph W Bahlman, Sharon M Swartz, Kenneth S BreuerBioinspiration & Biomimetics|May 24, 2014
How wing kinematics affect power requirements and aerodynamic force production in a robotic bat wingJoseph W Bahlman, Sharon M Swartz, Kenneth S BreuerPageof 9