Discriminating external and internal causes for heading changes in freely flying Drosophila.
As animals move through the world in search of resources, they change course in reaction to both external sensory cues and internally-generated programs. Elucidating the functional logic of complex search algorithms is challenging because the observable actions of the animal cannot be unambiguously...
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doaj-2af6a536f90d48a2a7e1b1648e30eae62020-11-25T01:46:02ZengPublic Library of Science (PLoS)PLoS Computational Biology1553-734X1553-73582013-01-0192e100289110.1371/journal.pcbi.1002891Discriminating external and internal causes for heading changes in freely flying Drosophila.Andrea CensiAndrew D StrawRosalyn W SayamanRichard M MurrayMichael H DickinsonAs animals move through the world in search of resources, they change course in reaction to both external sensory cues and internally-generated programs. Elucidating the functional logic of complex search algorithms is challenging because the observable actions of the animal cannot be unambiguously assigned to externally- or internally-triggered events. We present a technique that addresses this challenge by assessing quantitatively the contribution of external stimuli and internal processes. We apply this technique to the analysis of rapid turns ("saccades") of freely flying Drosophila melanogaster. We show that a single scalar feature computed from the visual stimulus experienced by the animal is sufficient to explain a majority (93%) of the turning decisions. We automatically estimate this scalar value from the observable trajectory, without any assumption regarding the sensory processing. A posteriori, we show that the estimated feature field is consistent with previous results measured in other experimental conditions. The remaining turning decisions, not explained by this feature of the visual input, may be attributed to a combination of deterministic processes based on unobservable internal states and purely stochastic behavior. We cannot distinguish these contributions using external observations alone, but we are able to provide a quantitative bound of their relative importance with respect to stimulus-triggered decisions. Our results suggest that comparatively few saccades in free-flying conditions are a result of an intrinsic spontaneous process, contrary to previous suggestions. We discuss how this technique could be generalized for use in other systems and employed as a tool for classifying effects into sensory, decision, and motor categories when used to analyze data from genetic behavioral screens.http://europepmc.org/articles/PMC3585425?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Andrea Censi Andrew D Straw Rosalyn W Sayaman Richard M Murray Michael H Dickinson |
spellingShingle |
Andrea Censi Andrew D Straw Rosalyn W Sayaman Richard M Murray Michael H Dickinson Discriminating external and internal causes for heading changes in freely flying Drosophila. PLoS Computational Biology |
author_facet |
Andrea Censi Andrew D Straw Rosalyn W Sayaman Richard M Murray Michael H Dickinson |
author_sort |
Andrea Censi |
title |
Discriminating external and internal causes for heading changes in freely flying Drosophila. |
title_short |
Discriminating external and internal causes for heading changes in freely flying Drosophila. |
title_full |
Discriminating external and internal causes for heading changes in freely flying Drosophila. |
title_fullStr |
Discriminating external and internal causes for heading changes in freely flying Drosophila. |
title_full_unstemmed |
Discriminating external and internal causes for heading changes in freely flying Drosophila. |
title_sort |
discriminating external and internal causes for heading changes in freely flying drosophila. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Computational Biology |
issn |
1553-734X 1553-7358 |
publishDate |
2013-01-01 |
description |
As animals move through the world in search of resources, they change course in reaction to both external sensory cues and internally-generated programs. Elucidating the functional logic of complex search algorithms is challenging because the observable actions of the animal cannot be unambiguously assigned to externally- or internally-triggered events. We present a technique that addresses this challenge by assessing quantitatively the contribution of external stimuli and internal processes. We apply this technique to the analysis of rapid turns ("saccades") of freely flying Drosophila melanogaster. We show that a single scalar feature computed from the visual stimulus experienced by the animal is sufficient to explain a majority (93%) of the turning decisions. We automatically estimate this scalar value from the observable trajectory, without any assumption regarding the sensory processing. A posteriori, we show that the estimated feature field is consistent with previous results measured in other experimental conditions. The remaining turning decisions, not explained by this feature of the visual input, may be attributed to a combination of deterministic processes based on unobservable internal states and purely stochastic behavior. We cannot distinguish these contributions using external observations alone, but we are able to provide a quantitative bound of their relative importance with respect to stimulus-triggered decisions. Our results suggest that comparatively few saccades in free-flying conditions are a result of an intrinsic spontaneous process, contrary to previous suggestions. We discuss how this technique could be generalized for use in other systems and employed as a tool for classifying effects into sensory, decision, and motor categories when used to analyze data from genetic behavioral screens. |
url |
http://europepmc.org/articles/PMC3585425?pdf=render |
work_keys_str_mv |
AT andreacensi discriminatingexternalandinternalcausesforheadingchangesinfreelyflyingdrosophila AT andrewdstraw discriminatingexternalandinternalcausesforheadingchangesinfreelyflyingdrosophila AT rosalynwsayaman discriminatingexternalandinternalcausesforheadingchangesinfreelyflyingdrosophila AT richardmmurray discriminatingexternalandinternalcausesforheadingchangesinfreelyflyingdrosophila AT michaelhdickinson discriminatingexternalandinternalcausesforheadingchangesinfreelyflyingdrosophila |
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