activity
20192023
most citedLocomotor transitions in the potential energy landscape-dominated regime

19 citations · 49 across the 5 of their papers we have counts for

collaborators

7 papers

physics.bio-ph2023

Kinetic energy fluctuation-driven locomotor transitions on potential energy landscapes of beam obstacle traversal and self-righting

Ratan Othayoth

Despite contending with constraints imposed by the environment, morphology, and physiology, animals move well by physically interactingwith the environment to use and transition be…

physics.bio-ph2021

A terrain treadmill to study animal locomotion through large obstacles

Ratan Othayoth, Blake Strebel, Yuanfeng Han +2

A major challenge to understanding locomotion in complex 3-D terrain with large obstacles is to create tools for controlled, systematic lab experiments. Existing terrain arenas onl…

physics.bio-ph2021★ 16 cited

Cockroaches adjust body and appendages to traverse cluttered large obstacles

Yaqing Wang, Ratan Othayoth, Chen Li

To traverse complex natural terrain, animals often transition between locomotor modes. It is well known that locomotor transitions can be induced by switching in neural control cir…

physics.bio-ph2021★ 19 cited

Locomotor transitions in the potential energy landscape-dominated regime

Ratan Othayoth, Qihan Xuan, Yaqing Wang +1

To traverse complex three-dimensional terrainwith large obstacles, animals and robots must transition across different modes. However, the most mechanistic understanding of terrest…

physics.bio-ph2021★ 14 cited

Shape-induced obstacle attraction and repulsion during dynamic locomotion

Yuanfeng Han, Ratan Othayoth, Yulong Wang +4

Robots still struggle to dynamically traverse complex 3-D terrain with many large obstacles, an ability required for many critical applications. Body-obstacle interaction is often…

physics.bio-ph2020

An energy landscape approach to locomotor transitions in complex 3D terrain

Ratan Othayoth, George Thoms, Chen Li

Effective locomotion in nature happens by transitioning across multiple modes (e.g., walk, run, climb). Despite this, far more mechanistic understanding of terrestrial locomotion h…