How to hit home runs: Optimum baseball bat swing parameters for maximum range trajectories

Gregory S. Sawicki , Mont Hubbard , William J. Stronge
American Journal of Physics 71 ( 11) 1152 -1162

143
2003
A Simple Model to Estimate Plantarflexor Muscle–Tendon Mechanics and Energetics During Walking With Elastic Ankle Exoskeletons

Gregory S. Sawicki , Nabil S. Khan
IEEE Transactions on Biomedical Engineering 63 ( 5) 914 -923

77
2016
The biomechanics and energetics of human running using an elastic knee exoskeleton

Grant Elliott , Gregory S. Sawicki , Andrew Marecki , Hugh Herr
ieee international conference on rehabilitation robotics 2013 1 -6

80
2013
A Soft-Exosuit Enables Multi-Scale Analysis of Wearable Robotics in a Bipedal Animal Model

S. M. Cox , Jonas Rubenson , Gregory S. Sawicki
intelligent robots and systems 4685 -4691

1
2018
Mechanical power amplification in a compliant muscle–tendon working on an inertial load in gravity

Gregory S. Sawicki , Peter Sheppard , Thomas J. Roberts
Comparative Biochemistry and Physiology A-molecular & Integrative Physiology 153 ( 2)

2009
Mechanical performance of artificial pneumatic muscles to power an ankle–foot orthosis

Keith E. Gordon , Gregory S. Sawicki , Daniel P. Ferris
Journal of Biomechanics 39 ( 10) 1832 -1841

176
2006
Reducing the energy cost of human walking using an unpowered exoskeleton

Steven H. Collins , M. Bruce Wiggin , Gregory S. Sawicki
Nature 522 ( 7555) 212 -215

872
2015
Influence of parallel spring-loaded exoskeleton on ankle muscle-tendon dynamics during simulated human hopping

Benjamin D. Robertson , Gregory S. Sawicki
2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society 2011 583 -586

5
2011
Adding carbon fiber to shoe soles may not improve running economy: a muscle-level explanation.

Owen N. Beck , Pawel R. Golyski , Gregory S. Sawicki
Scientific Reports 10 ( 1) 17154 -17154

3
2020
Elastic recoil can either amplify or attenuate muscle-tendon power, depending on inertial vs. fluid dynamic loading.

Christopher T. Richards , Gregory S. Sawicki
Journal of Theoretical Biology 313 68 -78

21
2012
14
2014
2020
Exoskeletons Improve Locomotion Economy by Reducing Active Muscle Volume.

Owen N. Beck , Laksh Kumar Punith , Richard W. Nuckols , Gregory S. Sawicki
Exercise and Sport Sciences Reviews 47 ( 4) 237 -245

17
2019
Muscle–spring dynamics in time-limited, elastic movements

M. V. Rosario , G. P. Sutton , S. N. Patek , G. S. Sawicki
Proceedings of The Royal Society B: Biological Sciences 283 ( 1838) 20161561

18
2016
Ultrasound imaging links soleus muscle neuromechanics and energetics during human walking with elastic ankle exoskeletons.

R. W. Nuckols , T. J. M. Dick , O. N. Beck , G. S. Sawicki
Scientific Reports 10 ( 1) 3604

18
2020
Six degree-of-freedom analysis of hip, knee, ankle and foot provides updated understanding of biomechanical work during human walking

K. E. Zelik , K. Z. Takahashi , G. S. Sawicki
The Journal of Experimental Biology 218 ( 6) 876 -886

121
2015
Timing matters: tuning the mechanics of a muscle–tendon unit by adjusting stimulation phase during cyclic contractions

G. S. Sawicki , B. D. Robertson , E. Azizi , T. J. Roberts
The Journal of Experimental Biology 218 ( 19) 3150 -3159

26
2015
Power amplification in an isolated muscle-tendon unit is load dependent.

G. S. Sawicki , P. Sheppard , T. J. Roberts
The Journal of Experimental Biology 218 ( 22) 3700 -3709

21
2015
Musculoskeletal modelling deconstructs the paradoxical effects of elastic ankle exoskeletons on plantar-flexor mechanics and energetics during hopping

D. J. Farris , J. L. Hicks , S. L. Delp , G. S. Sawicki
The Journal of Experimental Biology 217 ( 22) 4018 -4028

39
2014