Uploaded December 2015 | Updated September 2026, 6 hours ago
Segmentation of larval ECTS. Top left panel shows a binary video of a tracking experiment. Top right panel shows the midline of the
larva reconstructed from ECTS. The middle panel show the time evolution of the first three components of ECTS. Green and red vertical lines mark the beginning and the end of actions respectively. Note that if the end of an action coincidences with the beginning of the next action, then only red vertical line will show. The blue vertical line in the middle marks the time corresponding to the video frame in the two top panels. Bottom panel shows the behavioural annotation of ESA. The
annotation is probabilistic, height corresponds to the probability that the action is an example of a certain behaviour.
This research was published in the journal of the Royal Society Interface in the paper: 'Searching for motifs in the behaviour of larval Drosophila melanogaster and Caenorhabditis elegans reveals continuity between behavioural states' by Szigeti et al. The doi link for the article is rsif.royalsocietypublishing.org/lookup/doi/10.1098/rsif.2015.0899
Segmentation of larval ECTS. Top left panel shows a binary video of a tracking experiment. Top right panel shows the midline of the
larva reconstructed from ECTS. The middle panel show the time evolution of the first three components of ECTS. Green and red vertical lines mark the beginning and the end of actions respectively. Note that if the end of an action coincidences with the beginning of the next action, then only red vertical line will show. The blue vertical line in the middle marks the time corresponding to the video frame in the two top panels. Bottom panel shows the behavioural annotation of ESA. The
annotation is probabilistic, height corresponds to the probability that the action is an example of a certain behaviour.
This research was published in the journal of the Royal Society Interface in the paper: 'Searching for motifs in the behaviour of larval Drosophila melanogaster and Caenorhabditis elegans reveals continuity between behavioural states' by Szigeti et al. The doi link for the article is rsif.royalsocietypublishing.org/lookup/doi/10.1098/rsif.2015.0899










