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Active and Passive Antennal Movements during Visually Guided Steering in FlyingDrosophila

Authors :
Andrew Straw
Egill Tómasson
Akira Mamiya
Michael H. Dickinson
Source :
The Journal of Neuroscience. 31:6900-6914
Publication Year :
2011
Publisher :
Society for Neuroscience, 2011.

Abstract

Insects use feedback from a variety of sensory modalities, including mechanoreceptors on their antennae, to stabilize the direction and speed of flight. Like all arthropod appendages, antennae not only supply sensory information but may also be actively positioned by control muscles. However, how flying insects move their antennae during active turns and how such movements might influence steering responses are currently unknown. Here we examined the antennal movements of flyingDrosophiladuring visually induced turns in a tethered flight arena. In response to both rotational and translational patterns of visual motion,Drosophilaactively moved their antennae in a direction opposite to that of the visual motion. We also observed two types of passive antennal movements: small tonic deflections of the antenna and rapid oscillations at wing beat frequency. These passive movements are likely the result of wing-induced airflow and increased in magnitude when the angular distance between the wing and the antenna decreased. In response to rotational visual motion, increases in passive antennal movements appear to trigger a reflex that reduces the stroke amplitude of the contralateral wing, thereby enhancing the visually induced turn. Although the active antennal movements significantly increased antennal oscillation by bringing the arista closer to the wings, it did not significantly affect the turning response in our head-fixed, tethered flies. These results are consistent with the hypothesis that flyingDrosophilause mechanosensory feedback to detect changes in the wing induced airflow during visually induced turns and that this feedback plays a role in regulating the magnitude of steering responses.

Details

ISSN :
15292401 and 02706474
Volume :
31
Database :
OpenAIRE
Journal :
The Journal of Neuroscience
Accession number :
edsair.doi.dedup.....1f6fd18639144996b61c3bf928891934
Full Text :
https://doi.org/10.1523/jneurosci.0498-11.2011