A bio-inspired flying robot sheds light on insect piloting abilities N Franceschini, F Ruffier, J Serres Current Biology 17 (4), 329-335, 2007 | 216 | 2007 |
Fast reproducible identification and large-scale databasing of individual functional cognitive networks P Pinel, B Thirion, S Meriaux, A Jobert, J Serres, D Le Bihan, JB Poline, ... BMC neuroscience 8, 1-18, 2007 | 179 | 2007 |
Optic flow-based collision-free strategies: From insects to robots JR Serres, F Ruffier Arthropod Structure & Development 46, 703-717, 2017 | 155 | 2017 |
AntBot: A six-legged walking robot able to home like desert ants in outdoor environments J Dupeyroux, JR Serres, S Viollet Science Robotics 4 (27), eaau0307, 2019 | 141 | 2019 |
A vision-based autopilot for a miniature air vehicle: joint speed control and lateral obstacle avoidance J Serres, D Dray, F Ruffier, N Franceschini Autonomous robots 25, 103-122, 2008 | 117 | 2008 |
A bee in the corridor: centering and wall-following JR Serres, GP Masson, F Ruffier, N Franceschini Naturwissenschaften 95, 1181-1187, 2008 | 103 | 2008 |
An ant-inspired celestial compass applied to autonomous outdoor robot navigation J Dupeyroux, S Viollet, JR Serres Robotics and Autonomous Systems 117, 40-56, 2019 | 73 | 2019 |
Insect-Inspired Robots: Bridging Biological and Artificial Systems P Manoonpong, L Patanè, X Xiong, I Brodoline, J Dupeyroux, S Viollet, ... Sensors 21 (22), 7609, 2021 | 52 | 2021 |
Compact and high performance wind actuated venturi triboelectric energy harvester AN Ravichandran, C Calmes, JR Serres, M Ramuz, S Blayac Nano Energy 62, 449-457, 2019 | 52 | 2019 |
Polarized skylight-based heading measurements: a bio-inspired approach J Dupeyroux, S Viollet, JR Serres Journal of the Royal Society Interface 16 (150), 20180878, 2019 | 47 | 2019 |
A biomimetic vision-based hovercraft accounts for bees’ complex behaviour in various corridors FL Roubieu, JR Serres, F Colonnier, N Franceschini, S Viollet, F Ruffier Bioinspiration & biomimetics 9 (3), 036003, 2014 | 46 | 2014 |
Modelling honeybee visual guidance in a 3-D environment G Portelli, J Serres, F Ruffier, N Franceschini Journal of Physiology-Paris 104 (1-2), 27-39, 2010 | 37 | 2010 |
Optic flow based visual guidance: from flying insects to miniature aerial vehicles N Franceschini, F Ruffier, J Serres, S Viollet Aerial vehicles, 747-770, 2009 | 36 | 2009 |
Altitude control in honeybees: joint vision-based learning and guidance G Portelli, JR Serres, F Ruffier Scientific reports 7 (1), 9231, 2017 | 30 | 2017 |
Toward optic flow regulation for wall-following and centring behaviours J Serres, F Ruffier, S Viollet, N Franceschini International Journal of Advanced Robotic Systems 3 (2), 23, 2006 | 29 | 2006 |
Two optic flow regulators for speed control and obstacle avoidance J Serres, F Ruffier, N Franceschini The First IEEE/RAS-EMBS International Conference on Biomedical Robotics and …, 2006 | 28 | 2006 |
A fully-autonomous hovercraft inspired by bees: Wall following and speed control in straight and tapered corridors FL Roubieu, J Serres, N Franceschini, F Ruffier, S Viollet 2012 IEEE International Conference on Robotics and Biomimetics (ROBIO), 1311 …, 2012 | 27 | 2012 |
A novel insect-inspired optical compass sensor for a hexapod walking robot J Dupeyroux, J Diperi, M Boyron, S Viollet, J Serres 2017 IEEE/RSJ International Conference on Intelligent Robots and Systems …, 2017 | 24 | 2017 |
A bio-inspired celestial compass applied to an ant-inspired robot for autonomous navigation J Dupeyroux, J Diperi, M Boyron, S Viollet, J Serres 2017 European Conference on Mobile Robots (ECMR), 1-6, 2017 | 23 | 2017 |
Time-of-travel methods for measuring optical flow on board a micro flying robot E Vanhoutte, S Mafrica, F Ruffier, RJ Bootsma, J Serres Sensors 17 (3), 571, 2017 | 23 | 2017 |