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Binocular responsiveness of projection neurons of the praying mantis optic lobe in the frontal visual field

Ronny Rosner; Ghaith Tarawneh; Veronika Lukyanova; Jenny C. A. Read
Journal of Comparative Physiology A · Vol. 206, Issue 2 · pp. 165-181 · 2020

Abstract

Praying mantids are the only insects proven to have stereoscopic vision (stereopsis): the ability to perceive depth from the slightly shifted images seen by the two eyes. Recently, the first neurons likely to be involved in mantis stereopsis were described and a speculative neuronal circuit suggested. Here we further investigate classes of neurons in the lobula complex of the praying mantis brain and their tuning to stereoscopically-defined depth. We used sharp electrode recordings with tracer injections to identify visual projection neurons with input in the optic lobe and output in the central brain. In order to measure binocular response fields of the cells the animals watched a vertical bar stimulus in a 3D insect cinema during recordings. We describe the binocular tuning of 19 neurons projecting from the lobula complex and the medulla to central brain areas. The majority of neurons (12/19) were binocular and had receptive fields for both eyes that overlapped in the frontal region. Thus, these neurons could be involved in mantis stereopsis. We also find that neurons preferring different contrast polarity (bright vs dark) tend to be segregated in the mantis lobula complex, reminiscent of the segregation for small targets and widefield motion in mantids and other insects.

Bibliographic Information

JournalJournal of Comparative Physiology A
PublisherSpringer
Publication Date2020-03-01
Publication Year2020
Volume206
Issue2
Pages165-181
Document TypeJournal Article
Print ISSN0340-7594
eISSN1432-1351
DOI10.1007/s00359-020-01405-x

Access Information

NARA Access Coverage1924-01-01~Current
Journal Homepagehttps://www.springer.com/journal/359
Publisher PageOpen Publisher Page
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