Environmental constraints on the mechanics of crawling and burrowing using hydrostatic skeletons

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Abstract

Mechanics, kinematics, and energetics of crawling and burrowing by limbless organisms using hydrostatic skeletons depend on the medium and mode in which the organism is moving. Whether the animal is moving over or through a solid has long been considered important enough to distinguish crawling and burrowing as different terms, and in fact the mechanics are very different. Crawlers use mechanisms to increase friction to generate thrust while reducing resistive friction. Burrowers in elastic muds extend their burrows by fracture, whereas sands are fluidized by burrowers much larger than grain sizes and smaller burrowers displace individual grains. Gravitational forces depend on how closely the density of the organism matches that of its fluid surroundings, therefore frictional forces depend on whether the organism is moving through air or water and fluidization on whether sands are saturated or unsaturated. © The Author(s) 2010.

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Dorgan, K. M. (2010). Environmental constraints on the mechanics of crawling and burrowing using hydrostatic skeletons. In Proceedings of the Society for Experimental Mechanics, Inc. (Vol. 67, pp. 1373–1381). Society for Experimental Mechanics Inc. https://doi.org/10.1007/s11340-010-9399-2

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