We develop a model of the undulatory locomotion of nematodes, in particular that of Caenorhabditis elegans, based on mechanics. The model takes into account the most important forces acting on a moving worm and allows the computer simulation of a creeping nematode. These forces are produced by the interior pressure in the liquid-filled body cavity, the elasticity of the cuticle, the excitation of certain sets of muscles and the friction between the body and its support.We propose that muscle excitation patterns can be generated by stretch receptor control. By solving numerically the equations of motion of the model of the nematode, we demonstrate that these muscle excitation patterns are suitable for the propulsion of the animal
A quantitative understanding of organism-level behaviour requires predictive models that can capture...
Caenorhabditis elegans (C. elegans) is one of the most studied organisms by biologists. Composed of ...
AbstractWith a simple and versatile microcantilever-based force measurement technique, we have probe...
We develop a model of the undulatory locomotion of nematodes, in particular that of Caenorhabditis e...
We develop a model of the undulatory locomotion of nematodes, in particular that of Caenorhabditis e...
To establish the relationship between locomotory behavior and dynamics of neural circuits in the nem...
Although undulatory swimming is observed in many organisms, the neuromuscular basis for undulatory m...
A basic issue in the physics of behaviour is the mechanical relationship between an animal and its s...
Abstract — This paper focuses on the nematode C. elegans, which has a relatively simple structure, a...
The ability of an animal to locomote through its environment depends crucially on the interplay betw...
Apart from the fact that their locomotory activity determines the ability of parasitic forms to pene...
Abstract: Undulatory locomotion, as seen in the nematode Caenorhabditis ele-gans, is a common swimmi...
Abstract- This paper focuses on the nematode , which has a relatively simple structure, and is one...
Abstract—The nematode Caenorhabditis elegans is an im-portant model organism for many areas of biolo...
Abstract—The nematode Caenorhabditis elegans is an im-portant model organism for many areas of biolo...
A quantitative understanding of organism-level behaviour requires predictive models that can capture...
Caenorhabditis elegans (C. elegans) is one of the most studied organisms by biologists. Composed of ...
AbstractWith a simple and versatile microcantilever-based force measurement technique, we have probe...
We develop a model of the undulatory locomotion of nematodes, in particular that of Caenorhabditis e...
We develop a model of the undulatory locomotion of nematodes, in particular that of Caenorhabditis e...
To establish the relationship between locomotory behavior and dynamics of neural circuits in the nem...
Although undulatory swimming is observed in many organisms, the neuromuscular basis for undulatory m...
A basic issue in the physics of behaviour is the mechanical relationship between an animal and its s...
Abstract — This paper focuses on the nematode C. elegans, which has a relatively simple structure, a...
The ability of an animal to locomote through its environment depends crucially on the interplay betw...
Apart from the fact that their locomotory activity determines the ability of parasitic forms to pene...
Abstract: Undulatory locomotion, as seen in the nematode Caenorhabditis ele-gans, is a common swimmi...
Abstract- This paper focuses on the nematode , which has a relatively simple structure, and is one...
Abstract—The nematode Caenorhabditis elegans is an im-portant model organism for many areas of biolo...
Abstract—The nematode Caenorhabditis elegans is an im-portant model organism for many areas of biolo...
A quantitative understanding of organism-level behaviour requires predictive models that can capture...
Caenorhabditis elegans (C. elegans) is one of the most studied organisms by biologists. Composed of ...
AbstractWith a simple and versatile microcantilever-based force measurement technique, we have probe...