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The Journal of Experimental Biology
|
January 19, 2021
The Murphy number: how pitch moment of inertia dictates quadrupedal walking and running energetics
Delyle T Polet
Integrative and Comparative Biology
|
June 20, 2024
Optimal Gearing of Musculoskeletal Systems
Delyle T Polet, David Labonte
Frontiers in Bioengineering and Biotechnology
|
February 21, 2022
Estimating Gaits of an Ancient Crocodile-Line Archosaur Through Trajectory Optimization, With Comparison to Fossil Trackways
Delyle T Polet, John R Hutchinson
Plos Computational Biology
|
April 15, 2026
How muscle ageing affects rapid goal-directed movement: mechanistic insights from a simple model
Delyle T Polet, Christopher T Richards
Plos Computational Biology
|
November 22, 2019
An inelastic quadrupedal model discovers four-beat walking, two-beat running, and pseudo-elastic actuation as energetically optimal
Delyle T Polet, John E A Bertram
Frontiers in Bioengineering and Biotechnology
|
June 1, 2022
Competing Models of Work in Quadrupedal Walking: Center of Mass Work is Insufficient to Explain Stereotypical Gait
Delyle T Polet, John E A Bertram
Journal of the Royal Society, Interface
|
February 27, 2026
Form-function relationships determining optimal jumping performance in an early bipedal dinosaur
James P Charles, Delyle T Polet, John R Hutchinson
The Journal of Experimental Biology
|
September 12, 2018
Correction: Reducing gravity takes the bounce out of running (doi:10.1242/jeb.162024)
Delyle T Polet, Ryan T Schroeder, John E A Bertram
The Journal of Experimental Biology
|
December 9, 2017
Reducing gravity takes the bounce out of running
Delyle T Polet, Ryan T Schroeder, John E A Bertram
Plos One
|
October 8, 2015
A Mathematical Model to Capture Complex Microstructure Orientation on Insect Wings
Delyle T Polet, Morris R Flynn, Felix A H Sperling
Page
of 2
Search research articles
Search
Showing results (1-10 of 11) with videos related to
Sort By:
Page
of 2
The Journal of Experimental Biology
|
January 19, 2021
The Murphy number: how pitch moment of inertia dictates quadrupedal walking and running energetics
Delyle T Polet
Integrative and Comparative Biology
|
June 20, 2024
Optimal Gearing of Musculoskeletal Systems
Delyle T Polet, David Labonte
Frontiers in Bioengineering and Biotechnology
|
February 21, 2022
Estimating Gaits of an Ancient Crocodile-Line Archosaur Through Trajectory Optimization, With Comparison to Fossil Trackways
Delyle T Polet, John R Hutchinson
Plos Computational Biology
|
April 15, 2026
How muscle ageing affects rapid goal-directed movement: mechanistic insights from a simple model
Delyle T Polet, Christopher T Richards
Plos Computational Biology
|
November 22, 2019
An inelastic quadrupedal model discovers four-beat walking, two-beat running, and pseudo-elastic actuation as energetically optimal
Delyle T Polet, John E A Bertram
Frontiers in Bioengineering and Biotechnology
|
June 1, 2022
Competing Models of Work in Quadrupedal Walking: Center of Mass Work is Insufficient to Explain Stereotypical Gait
Delyle T Polet, John E A Bertram
Journal of the Royal Society, Interface
|
February 27, 2026
Form-function relationships determining optimal jumping performance in an early bipedal dinosaur
James P Charles, Delyle T Polet, John R Hutchinson
The Journal of Experimental Biology
|
September 12, 2018
Correction: Reducing gravity takes the bounce out of running (doi:10.1242/jeb.162024)
Delyle T Polet, Ryan T Schroeder, John E A Bertram
The Journal of Experimental Biology
|
December 9, 2017
Reducing gravity takes the bounce out of running
Delyle T Polet, Ryan T Schroeder, John E A Bertram
Plos One
|
October 8, 2015
A Mathematical Model to Capture Complex Microstructure Orientation on Insect Wings
Delyle T Polet, Morris R Flynn, Felix A H Sperling
Page
of 2