English

A terrain treadmill to study animal locomotion through large obstacles

Biological Physics 2021-12-16 v1 Systems and Control Systems and Control Quantitative Methods

Abstract

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 only allow observations at small spatiotemporal scales (~10 body length, ~10 stride cycles). Here, we create a terrain treadmill to enable high-resolution observations of animal locomotion through large obstacles over large spatiotemporal scales. An animal moves through modular obstacles on an inner sphere, while a rigidly-attached, concentric, transparent outer sphere rotated with the opposite velocity via closed-loop feedback to keep the animal on top. During sustained locomotion, a discoid cockroach moved through pillar obstacles for 25 minutes (\approx2500 strides) over 67 m (\approx1500 body lengths), and was contained within a radius of 4 cm (0.9 body length) for 83% of the duration, even at speeds of up to 10 body length/s. The treadmill enabled observation of diverse locomotor behaviors and quantification of animal-obstacle interaction.

Keywords

Cite

@article{arxiv.2112.07854,
  title  = {A terrain treadmill to study animal locomotion through large obstacles},
  author = {Ratan Othayoth and Blake Strebel and Yuanfeng Han and Evains Francois and Chen Li},
  journal= {arXiv preprint arXiv:2112.07854},
  year   = {2021}
}