Suppression of motion vision during course-changing, but not course-stabilizing, navigational turns

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초록

From mammals to insects, locomotion has been shown to strongly modulate visual-system physiology. Does the manner in which a locomotor act is initiated change the modulation observed? We performed patchclamp recordings from motion-sensitive visual neurons in tethered, flying Drosophila. We observed motorrelated signals in flies performing flight turns in rapid response to looming discs and also during spontaneous turns, but motor-related signals were weak or non-existent in the context of turns made in response to brief pulses of unidirectional visual motion (i.e., optomotor responses). Thus, the act of a locomotor turn is variably associated with modulation of visual processing. These results can be understood via the following principle: suppress visual responses during course-changing, but not course-stabilizing, navigational turns. This principle is likely to apply broadly-even to mammals-whenever visual cells whose activity helps to stabilize a locomotor trajectory or the visual gaze angle are targeted for motor modulation.

키워드

corollary dischargeDrosophilaefference copygaze stabilityinsect flightloomingnavigationpatch clampsaccadesspontaneous behaviorCOROLLARY DISCHARGEHORIZONTAL CELLSEFFERENCE COPYVISUAL-MOTIONWIDE-FIELDDROSOPHILARESPONSESFLYSYSTEMINTERNEURONS
제목
Suppression of motion vision during course-changing, but not course-stabilizing, navigational turns
저자
Fenk, Lisa M.Kim, Anmo J.Maimon, Gaby
DOI
10.1016/j.cub.2021.09.068
발행일
2021-10
유형
Article
저널명
Current Biology
31
20
페이지
4608 ~ 4619.e3

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