We study model locomotors on a substrate, which derive their propulsive capabilities from the tangential (viscous or frictional) resistance offered by the substrate. Our aim is to develop new tools and insight for future studies of cellular motility by crawling and of collective bacterial motion. The purely viscous case (worm) is relevant for cellular motility by crawling of individual cells. We re-examine some recent results on snail locomotion in order to assess the role of finely regulated adhesion mechanisms in crawling motility. Our main conclusion is that such regulation, although well documented in several biological systems, is not indispensable to accomplish locomotion driven by internal deformations, provided that the crawler may ...
Caterpillar crawling is distinct from that of worms and molluscs; it consists of a series of steps i...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Caenorhabditis elegans (C. elegans) is one of the most studied organisms by biologists. Composed of ...
We study model locomotors on a substrate, which derive their propulsive capabilities from the tangen...
We study one-dimensional crawlers, namely, model mechanical systems that exploit cyclic shape change...
In this paper we study crawling locomotion based on directional frictional interactions, namely, fri...
We study model self-propelled crawlers which derive their propulsive capabilities from the tangentia...
The foot of pulmonate gastropods adheres to the surface upon which the animal crawls, the adhesive b...
We study model one-dimensional crawlers, namely, model mechanical systems that can achieve self-prop...
Complex fluids are a broad class of materials that are usually homogeneous at macroscopic scales but...
We formulate and solve the locomotion problem for a bio-inspired crawler consisting of two active el...
AbstractWith a simple and versatile microcantilever-based force measurement technique, we have probe...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Submitted to Phys. Fluids.Common gastropods such as snails crawl on a solid substrate by propagating...
We present experimental and numerical results for a model crawler which is able to extract net posit...
Caterpillar crawling is distinct from that of worms and molluscs; it consists of a series of steps i...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Caenorhabditis elegans (C. elegans) is one of the most studied organisms by biologists. Composed of ...
We study model locomotors on a substrate, which derive their propulsive capabilities from the tangen...
We study one-dimensional crawlers, namely, model mechanical systems that exploit cyclic shape change...
In this paper we study crawling locomotion based on directional frictional interactions, namely, fri...
We study model self-propelled crawlers which derive their propulsive capabilities from the tangentia...
The foot of pulmonate gastropods adheres to the surface upon which the animal crawls, the adhesive b...
We study model one-dimensional crawlers, namely, model mechanical systems that can achieve self-prop...
Complex fluids are a broad class of materials that are usually homogeneous at macroscopic scales but...
We formulate and solve the locomotion problem for a bio-inspired crawler consisting of two active el...
AbstractWith a simple and versatile microcantilever-based force measurement technique, we have probe...
Soft organisms including unicellular amoebae, slime molds and invertebrates without exoskeleton use ...
Submitted to Phys. Fluids.Common gastropods such as snails crawl on a solid substrate by propagating...
We present experimental and numerical results for a model crawler which is able to extract net posit...
Caterpillar crawling is distinct from that of worms and molluscs; it consists of a series of steps i...
Life under the microscope is significantly different from our experiences in the macroscopic world. ...
Caenorhabditis elegans (C. elegans) is one of the most studied organisms by biologists. Composed of ...