<div><p>Locomotion is driven by shape changes coordinated by the nervous system through time; thus, enumerating an animal's complete repertoire of shape transitions would provide a basis for a comprehensive understanding of locomotor behaviour. Here we introduce a discrete representation of behaviour in the nematode <i>C</i>. <i>elegans</i>. At each point in time, the worm’s posture is approximated by its closest matching template from a set of 90 postures and locomotion is represented as sequences of postures. The frequency distribution of postural sequences is heavy-tailed with a core of frequent behaviours and a much larger set of rarely used behaviours. Responses to optogenetic and environmental stimuli can be quantified as changes in p...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
To uncover the genetic basis of behavioral traits in the model organism C. elegans, a com-mon strate...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
Locomotion is driven by shape changes coordinated by the nervous system through time; thus, enumerat...
Locomotion is driven by shape changes coordinated by the nervous system through time; thus, enumerat...
Regularities in animal behaviour offer insight into the underlying organisational and functional pri...
Regularities in animal behaviour offer insights into the underlying organizational and functional pr...
From microorganisms to humans, animals behave by making complex changes in their shape and posture o...
The ability of an animal to locomote through its environment depends crucially on the interplay betw...
<div><p>This paper presents a method for automated detection of complex (non-self-avoiding) postures...
We investigated the neural representation of locomotion in the nematode C. elegans by recording popu...
In animal locomotion a tradeoff exists between stereotypy and flexibility: fast long-distance travel...
This electronic version was submitted by the student author. The certified thesis is available in th...
The behavior of the nematode C. elegans has proven increasingly useful for the genetic dissection of...
To uncover the genetic basis of behavioral traits in the model organism C. elegans, a common strateg...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
To uncover the genetic basis of behavioral traits in the model organism C. elegans, a com-mon strate...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
Locomotion is driven by shape changes coordinated by the nervous system through time; thus, enumerat...
Locomotion is driven by shape changes coordinated by the nervous system through time; thus, enumerat...
Regularities in animal behaviour offer insight into the underlying organisational and functional pri...
Regularities in animal behaviour offer insights into the underlying organizational and functional pr...
From microorganisms to humans, animals behave by making complex changes in their shape and posture o...
The ability of an animal to locomote through its environment depends crucially on the interplay betw...
<div><p>This paper presents a method for automated detection of complex (non-self-avoiding) postures...
We investigated the neural representation of locomotion in the nematode C. elegans by recording popu...
In animal locomotion a tradeoff exists between stereotypy and flexibility: fast long-distance travel...
This electronic version was submitted by the student author. The certified thesis is available in th...
The behavior of the nematode C. elegans has proven increasingly useful for the genetic dissection of...
To uncover the genetic basis of behavioral traits in the model organism C. elegans, a common strateg...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
To uncover the genetic basis of behavioral traits in the model organism C. elegans, a com-mon strate...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...