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Integration of parallel mechanosensory and visual pathways resolved through sensory conflict

Eatai Roth, Robert W. Hall, Thomas L. Daniel, Simon Sponberg

Year
2016
Citations
80
Access
Open access

Abstract

In the laboratory, moths feed from a robotically actuated two-part artificial flower that allows independent presentation of visual and mechanosensory cues. Freely flying moths track lateral flower motion stimuli in an assay spanning both coupled motion, in which visual and mechanosensory cues follow the same motion trajectory, and sensory conflict, in which the two sensory modalities encode different motion stimuli. Applying a frequency-domain system identification analysis, we find that the tracking behavior is, in fact, multisensory and arises from a linear summation of visual and mechanosensory pathways. The response dynamics are highly preserved across individuals, providing a model for predicting the response to novel multimodal stimuli. Surprisingly, we find that each pathway in and of itself is sufficient for driving tracking behavior. When multiple sensory pathways elicit strong behavioral responses, this parallel architecture furnishes robustness via redundancy.

Keywords

Sensory systemStimulus modalitySensory cueMultisensory integrationStimulus (psychology)Sensory AdaptationVisual systemNeuroscienceCommunicationComputer science

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