Airflow and optic flow mediate antennal positioning in flying honeybees

Khurana, Taruni Roy ; Sane, Sanjay P. (2016) Airflow and optic flow mediate antennal positioning in flying honeybees eLife, 5 . Article ID e1444. ISSN 2050-084X

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Related URL: http://dx.doi.org/10.7554/eLife.14449.001

Abstract

To maintain their speeds during navigation, insects rely on feedback from their visual and mechanosensory modalities. Although optic flow plays an essential role in speed determination, it is less reliable under conditions of low light or sparse landmarks. Under such conditions, insects rely on feedback from antennal mechanosensors but it is not clear how these inputs combine to elicit flight-related antennal behaviours. We here show that antennal movements of the honeybee, Apis mellifera, are governed by combined visual and antennal mechanosensory inputs. Frontal airflow, as experienced during forward flight, causes antennae to actively move forward as a sigmoidal function of absolute airspeed values. However, corresponding front-to-back optic flow causes antennae to move backward, as a linear function of relative optic flow, opposite the airspeed response. When combined, these inputs maintain antennal position in a state of dynamic equilibrium.

Item Type:Article
Source:Copyright of this article belongs to eLife Sciences Publications.
ID Code:114079
Deposited On:28 May 2018 05:15
Last Modified:28 May 2018 05:15

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