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Arthropod Structure & Development|June 29, 2017
Optic flow-based collision-free strategies: From insects to robotsJulien R Serres, Franck RuffierScientific Reports|August 25, 2017
Altitude control in honeybees: joint vision-based learning and guidanceGeoffrey Portelli, Julien R Serres, Franck RuffierDie Naturwissenschaften|September 25, 2008
A bee in the corridor: centering and wall-followingJulien R Serres, Guillaume P Masson, Franck Ruffier, et al.Nature Communications|September 24, 2025
Route-centric ant-inspired memories enable panoramic route-following in a car-like robotGabriel G Gattaux, Antoine Wystrach, Julien R Serres, et al.Plos One|August 11, 2021
Ecological design of augmentation improves helicopter ship landing maneuvers: An approach in augmented virtualityAntoine H P Morice, Thomas Rakotomamonjy, Julien R Serres, et al.Scientific Reports|March 29, 2023
Visual augmentation of deck-landing-ability improves helicopter ship landing decisionsMathieu Thomas, Julien R Serres, Thomas Rakotomamonjy, et al.Bioinspiration & Biomimetics|March 12, 2014
A biomimetic vision-based hovercraft accounts for bees' complex behaviour in various corridorsFrédéric L Roubieu, Julien R Serres, Fabien Colonnier, et al.Biology Letters|March 23, 2022
Floor and ceiling mirror configurations to study altitude control in honeybeesJulien R Serres, Antoine H P Morice, Constance Blary, et al.Journal of the Royal Society, Interface|October 10, 2019
Optic flow cues help explain altitude control over sea in freely flying gullsJulien R Serres, Thomas J Evans, Susanne Åkesson, et al.Bioinspiration & Biomimetics|February 27, 2015
Flying over uneven moving terrain based on optic-flow cues without any need for reference frames or accelerometersFabien Expert, Franck RuffierPageof 4