Matches in SemOpenAlex for { <https://semopenalex.org/work/W2019190622> ?p ?o ?g. }
- W2019190622 endingPage "e173" @default.
- W2019190622 startingPage "e173" @default.
- W2019190622 abstract "For sensory signals to control an animal's behavior, they must first be transformed into a format appropriate for use by its motor systems. This fundamental problem is faced by all animals, including humans. Beyond simple reflexes, little is known about how such sensorimotor transformations take place. Here we describe how the outputs of a well-characterized population of fly visual interneurons, lobula plate tangential cells (LPTCs), are used by the animal's gaze-stabilizing neck motor system. The LPTCs respond to visual input arising from both self-rotations and translations of the fly. The neck motor system however is involved in gaze stabilization and thus mainly controls compensatory head rotations. We investigated how the neck motor system is able to selectively extract rotation information from the mixed responses of the LPTCs. We recorded extracellularly from fly neck motor neurons (NMNs) and mapped the directional preferences across their extended visual receptive fields. Our results suggest that-like the tangential cells-NMNs are tuned to panoramic retinal image shifts, or optic flow fields, which occur when the fly rotates about particular body axes. In many cases, tangential cells and motor neurons appear to be tuned to similar axes of rotation, resulting in a correlation between the coordinate systems the two neural populations employ. However, in contrast to the primarily monocular receptive fields of the tangential cells, most NMNs are sensitive to visual motion presented to either eye. This results in the NMNs being more selective for rotation than the LPTCs. Thus, the neck motor system increases its rotation selectivity by a comparatively simple mechanism: the integration of binocular visual motion information." @default.
- W2019190622 created "2016-06-24" @default.
- W2019190622 creator A5010158233 @default.
- W2019190622 creator A5042673349 @default.
- W2019190622 date "2008-07-22" @default.
- W2019190622 modified "2023-10-11" @default.
- W2019190622 title "Visuomotor Transformation in the Fly Gaze Stabilization System" @default.
- W2019190622 cites W106079585 @default.
- W2019190622 cites W1514342190 @default.
- W2019190622 cites W1528388187 @default.
- W2019190622 cites W173170840 @default.
- W2019190622 cites W177116524 @default.
- W2019190622 cites W1849305587 @default.
- W2019190622 cites W1888586863 @default.
- W2019190622 cites W1970035480 @default.
- W2019190622 cites W1970898597 @default.
- W2019190622 cites W1972473019 @default.
- W2019190622 cites W1975474923 @default.
- W2019190622 cites W1979221353 @default.
- W2019190622 cites W1988247161 @default.
- W2019190622 cites W1989257116 @default.
- W2019190622 cites W1990625624 @default.
- W2019190622 cites W1996186955 @default.
- W2019190622 cites W2013046598 @default.
- W2019190622 cites W2014921759 @default.
- W2019190622 cites W2033233488 @default.
- W2019190622 cites W2036677060 @default.
- W2019190622 cites W2051455048 @default.
- W2019190622 cites W2053604779 @default.
- W2019190622 cites W2058683084 @default.
- W2019190622 cites W2069385338 @default.
- W2019190622 cites W2079764659 @default.
- W2019190622 cites W2081035276 @default.
- W2019190622 cites W2091461218 @default.
- W2019190622 cites W2098857437 @default.
- W2019190622 cites W2115511946 @default.
- W2019190622 cites W2131517740 @default.
- W2019190622 cites W2167714768 @default.
- W2019190622 cites W22201145 @default.
- W2019190622 cites W2329012322 @default.
- W2019190622 cites W2418811249 @default.
- W2019190622 cites W2615633650 @default.
- W2019190622 cites W4232755864 @default.
- W2019190622 doi "https://doi.org/10.1371/journal.pbio.0060173" @default.
- W2019190622 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/2475543" @default.
- W2019190622 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/18651791" @default.
- W2019190622 hasPublicationYear "2008" @default.
- W2019190622 type Work @default.
- W2019190622 sameAs 2019190622 @default.
- W2019190622 citedByCount "105" @default.
- W2019190622 countsByYear W20191906222012 @default.
- W2019190622 countsByYear W20191906222013 @default.
- W2019190622 countsByYear W20191906222014 @default.
- W2019190622 countsByYear W20191906222015 @default.
- W2019190622 countsByYear W20191906222016 @default.
- W2019190622 countsByYear W20191906222017 @default.
- W2019190622 countsByYear W20191906222018 @default.
- W2019190622 countsByYear W20191906222019 @default.
- W2019190622 countsByYear W20191906222020 @default.
- W2019190622 countsByYear W20191906222021 @default.
- W2019190622 countsByYear W20191906222022 @default.
- W2019190622 countsByYear W20191906222023 @default.
- W2019190622 crossrefType "journal-article" @default.
- W2019190622 hasAuthorship W2019190622A5010158233 @default.
- W2019190622 hasAuthorship W2019190622A5042673349 @default.
- W2019190622 hasBestOaLocation W20191906221 @default.
- W2019190622 hasConcept C105702510 @default.
- W2019190622 hasConcept C111370547 @default.
- W2019190622 hasConcept C137813230 @default.
- W2019190622 hasConcept C144024400 @default.
- W2019190622 hasConcept C149923435 @default.
- W2019190622 hasConcept C15744967 @default.
- W2019190622 hasConcept C169760540 @default.
- W2019190622 hasConcept C171139928 @default.
- W2019190622 hasConcept C19071747 @default.
- W2019190622 hasConcept C2779916870 @default.
- W2019190622 hasConcept C2908647359 @default.
- W2019190622 hasConcept C31972630 @default.
- W2019190622 hasConcept C41008148 @default.
- W2019190622 hasConcept C46312422 @default.
- W2019190622 hasConcept C65909025 @default.
- W2019190622 hasConcept C74050887 @default.
- W2019190622 hasConcept C86803240 @default.
- W2019190622 hasConcept C94487597 @default.
- W2019190622 hasConceptScore W2019190622C105702510 @default.
- W2019190622 hasConceptScore W2019190622C111370547 @default.
- W2019190622 hasConceptScore W2019190622C137813230 @default.
- W2019190622 hasConceptScore W2019190622C144024400 @default.
- W2019190622 hasConceptScore W2019190622C149923435 @default.
- W2019190622 hasConceptScore W2019190622C15744967 @default.
- W2019190622 hasConceptScore W2019190622C169760540 @default.
- W2019190622 hasConceptScore W2019190622C171139928 @default.
- W2019190622 hasConceptScore W2019190622C19071747 @default.
- W2019190622 hasConceptScore W2019190622C2779916870 @default.
- W2019190622 hasConceptScore W2019190622C2908647359 @default.
- W2019190622 hasConceptScore W2019190622C31972630 @default.
- W2019190622 hasConceptScore W2019190622C41008148 @default.
- W2019190622 hasConceptScore W2019190622C46312422 @default.