@article {548451, title = {Differential design for hopping in two species of wallabies}, journal = {Comp Biochem Physiol A Mol Integr PhysiolComp Biochem Physiol A Mol Integr PhysiolComp Biochem Physiol A Mol Integr Physiol}, volume = {150}, number = {2}, year = {2008}, note = {McGowan, C PBaudinette, R VBiewener, A AengResearch Support, Non-U.S. Gov{\textquoteright}tResearch Support, U.S. Gov{\textquoteright}t, Non-P.H.S.2006/07/25 09:00Comp Biochem Physiol A Mol Integr Physiol. 2008 Jun;150(2):151-8. Epub 2006 Jun 21.}, month = {Jun}, pages = {151-8}, abstract = {Hindlimb musculoskeletal anatomy and steady speed over ground hopping mechanics were compared in two species of macropod marsupials, tammar wallabies and yellow-footed rock wallabies (YFRW). These two species are relatively closely related and are of similar size and general body plan, yet they inhabit different environments with presumably different musculoskeletal demands. Tammar wallabies live in relatively flat, open habitat whereas yellow-footed rock wallabies inhabit steep cliff faces. The goal of this study was to explore musculoskeletal differences between tammar wallabies and yellow-footed rock wallabies and determine how these differences influence each species{\textquoteright} hopping mechanics. We found the cross-sectional area of the combined ankle extensor tendons of yellow-footed rock wallabies was 13\% greater than that of tammar wallabies. Both species experienced similar ankle joint moments during steady-speed hopping, however due to a lower mechanical advantage at this joint, tammar wallabies produced 26\% more muscle force. Thus, during moderate speed hopping, yellow-footed rock wallabies operated with 38\% higher tendon safety factors, while tammar wallabies were able to store 73\% more elastic strain energy (2.18 J per leg vs. 1.26 J in YFRW). This likely reflects the differing demands of the environments inhabited by these two species, where selection for non-steady locomotor performance in rocky terrain likely requires trade-offs in locomotor economy.}, keywords = {Animals, Biomechanical Phenomena, Female, Foot Joints/physiology, Hindlimb/physiology, Locomotion/*physiology, Macropodidae/*physiology, Male, Muscle, Skeletal/physiology, Tendons/physiology, Tomography, X-Ray Computed}, isbn = {1531-4332 (Electronic)1095-6433 (Linking)}, author = {McGowan, C. P. and Baudinette, R. V. and Biewener, A. A.} }