Climbing favours the tripod gait over alternative faster insect gaits
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Dario Floreano | Auke Jan Ijspeert | Robin Thandiackal | Thibault Asselborn | Pavan Ramdya | Richard Benton | Raphael Cherney | A. Ijspeert | D. Floreano | Thibault Asselborn | Pavan Ramdya | R. Benton | R. Thandiackal | Raphaël Cherney
[1] E. Muybridge. The science of animal locomotion (zoopraxography) : an electro-photographic investigation of consecutive phases of animal movements / by Eadward Muybridge ; executed and published under the auspices of the University of Pennsylvania. , .
[2] A. D. Imms,et al. Principles of Insect Morphology , 1935, Nature.
[3] K. Kobe. The friction and lubrication of solids , 1951 .
[4] G. M. Hughes. The Co-Ordination of Insect Movements I The Walking Movements of Insects , 1952 .
[5] T. Merton. On a barrier against insect pests , 1956, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[6] M Hildebrand,et al. Symmetrical gaits of horses. , 1965, Science.
[7] D. Wilson. Insect walking. , 1966, Annual review of entomology.
[8] D. F. Hoyt,et al. Gait and the energetics of locomotion in horses , 1981, Nature.
[9] R. Full,et al. Mechanics of six-legged runners. , 1990, The Journal of experimental biology.
[10] H. Cruse. What mechanisms coordinate leg movement in walking arthropods? , 1990, Trends in Neurosciences.
[11] R. Full,et al. Mechanics of a rapid running insect: two-, four- and six-legged locomotion. , 1991, The Journal of experimental biology.
[12] R. Blickhan,et al. Leg design in hexapedal runners. , 1991, The Journal of experimental biology.
[13] Randall D. Beer,et al. Evolving Dynamical Neural Networks for Adaptive Behavior , 1992, Adapt. Behav..
[14] Zollikofer. STEPPING PATTERNS IN ANTS - INFLUENCE OF BODY MORPHOLOGY , 1994, The Journal of experimental biology.
[15] R. Blickhan,et al. Dynamic and static stability in hexapedal runners. , 1994, The Journal of experimental biology.
[16] R. Ritzmann,et al. Motion analysis of escape movements evoked by tactile stimulation in the cockroach Periplaneta americana. , 1994, The Journal of experimental biology.
[17] U. Bässler,et al. Pattern generation for stick insect walking movements—multisensory control of a locomotor program , 1998, Brain Research Reviews.
[18] V. French,et al. Body size and cell size in Drosophila: the developmental response to temperature. , 1998, Journal of insect physiology.
[19] Lambert Schomaker,et al. 2000 IEEE/RSJ International Conference On Intelligent Robots And Systems , 2000, Proceedings. 2000 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS 2000) (Cat. No.00CH37113).
[20] T. Eisner,et al. Defense by foot adhesion in a beetle (Hemisphaerota cyanea). , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[21] H. Cruse,et al. A Biologically Inspired Controller for Hexapod Walking: Simple Solutions by Exploiting Physical Properties , 2001, The Biological Bulletin.
[22] R. McNeill Alexander,et al. Principles of Animal Locomotion , 2002 .
[23] R. Full,et al. An Integrative Study of Insect Adhesion: Mechanics and Wet Adhesion of Pretarsal Pads in Ants1 , 2002, Integrative and comparative biology.
[24] Philip Holmes,et al. Mechanical models for insect locomotion: active muscles and energy losses , 2003, Biological Cybernetics.
[25] J. M. Bush,et al. The hydrodynamics of water strider locomotion , 2003, Nature.
[26] S. Gorb,et al. From micro to nano contacts in biological attachment devices , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[27] R. Strauss,et al. Coordination of legs during straight walking and turning in Drosophila melanogaster , 1990, Journal of Comparative Physiology A.
[28] S. Gorb,et al. Evolution of locomotory attachment pads in the Dermaptera (Insecta). , 2004, Arthropod structure & development.
[29] T. Endlein,et al. Locomotion and adhesion: dynamic control of adhesive surface contact in ants. , 2004, Arthropod structure & development.
[30] O. Michel. WebotsTM: Professional Mobile Robot Simulation , 2004, ArXiv.
[31] Olivier Michel,et al. Cyberbotics Ltd. Webots™: Professional Mobile Robot Simulation , 2004 .
[32] D. Graham. A behavioural analysis of the temporal organisation of walking movements in the 1st instar and adult stick insect (Carausius morosus) , 1972, Journal of comparative physiology.
[33] Cédric Soler,et al. Coordinated development of muscles and tendons of the Drosophila leg , 2004, Development.
[34] F. Delcomyn. Insect walking and robotics. , 2003, Annual review of entomology.
[35] R. Full,et al. Dynamics of rapid vertical climbing in cockroaches reveals a template , 2006, Journal of Experimental Biology.
[36] Volker Dürr,et al. Insect walking is based on a decentralized architecture revealing a simple and robust controller , 2007, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[37] Holk Cruse,et al. Decentralized Control of Elastic Limbs in Closed Kinematic Chains , 2006, Int. J. Robotics Res..
[38] Manoj Srinivasan,et al. Computer optimization of a minimal biped model discovers walking and running , 2006, Nature.
[39] H. Sink. Muscle development in drosophila , 2006 .
[40] A. Ijspeert,et al. From Swimming to Walking with a Salamander Robot Driven by a Spinal Cord Model , 2007, Science.
[41] Riccardo Poli,et al. Particle swarm optimization , 1995, Swarm Intelligence.
[42] T. Endlein,et al. Walking on smooth or rough ground: passive control of pretarsal attachment in ants , 2007, Journal of Comparative Physiology A.
[43] R. Blickhan,et al. Dynamics and kinematics of ant locomotion: do wood ants climb on level surfaces? , 2009, Journal of Experimental Biology.
[44] Pietro Perona,et al. Automated monitoring and analysis of social behavior in Drosophila , 2009, Nature Methods.
[45] Kalyanmoy Deb,et al. Development of efficient particle swarm optimizers by using concepts from evolutionary algorithms , 2010, GECCO '10.
[46] D. Floreano,et al. Evolution of Adaptive Behaviour in Robots by Means of Darwinian Selection , 2010, PLoS biology.
[47] I. Ial,et al. Nature Communications , 2010, Nature Cell Biology.
[48] R. Full. Invertebrate Locomotor Systems , 2011 .
[49] Ravi Vaidyanathan,et al. IEEE International Conference on Intelligent Robots and Systems , 2011, IROS 2011.
[50] Brian R. Tietz,et al. Kinematic and behavioral evidence for a distinction between trotting and ambling gaits in the cockroach Blaberus discoidalis , 2011, Journal of Experimental Biology.
[51] Ansgar Büschges,et al. From neuron to behavior: dynamic equation-based prediction of biological processes in motor control , 2011, Biological Cybernetics.
[52] Marko Ackermann,et al. Predictive simulation of gait at low gravity reveals skipping as the preferred locomotion strategy. , 2012, Journal of biomechanics.
[53] D. Floreano,et al. Historical contingency affects signaling strategies and competitive abilities in evolving populations of simulated robots , 2012, Proceedings of the National Academy of Sciences.
[54] S. B. Nair,et al. Bio-inspired artificial intelligence , 2012, 2012 3rd National Conference on Emerging Trends and Applications in Computer Science.
[55] Pei-Chun Lin,et al. Bio-inspired step-climbing in a hexapod robot , 2012, Bioinspiration & biomimetics.
[56] K. Kullander,et al. Mutations in DMRT3 affect locomotion in horses and spinal circuit function in mice , 2012, Nature.
[57] Roger D. Quinn,et al. A neuromechanical simulation of insect walking and transition to turning of the cockroach Blaberus discoidalis , 2013, Biological Cybernetics.
[58] R. Mann,et al. Quantification of gait parameters in freely walking wild type and sensory deprived Drosophila melanogaster , 2013, eLife.
[59] Thierry Hoinville,et al. Walknet, a bio-inspired controller for hexapod walking , 2013, Biological Cybernetics.
[60] O. Kiehn,et al. Dual-mode operation of neuronal networks involved in left–right alternation , 2013, Nature.
[61] A. Büschges,et al. Inter-leg coordination in the control of walking speed in Drosophila , 2013, Journal of Experimental Biology.
[62] Jochen Smolka,et al. A new galloping gait in an insect , 2013, Current Biology.
[63] R. Blickhan,et al. Level locomotion in wood ants: evidence for grounded running , 2014, Journal of Experimental Biology.
[64] R. Mann,et al. Kinematic Responses to Changes in Walking Orientation and Gravitational Load in Drosophila melanogaster , 2014, PloS one.
[65] Auke J. Ijspeert,et al. Biorobotics: Using robots to emulate and investigate agile locomotion , 2014, Science.
[66] Matthias Wittlinger,et al. Walking and running in the desert ant Cataglyphis fortis , 2015, Journal of Comparative Physiology A.
[67] Jonas O. Wolff,et al. Adhesive pad differentiation in Drosophila melanogaster depends on the Polycomb group gene Su(z)2 , 2015, The Journal of Experimental Biology.
[68] D. Floreano,et al. Mechanosensory Interactions Drive Collective Behaviour in Drosophila , 2014, Nature.
[69] Volker Dürr,et al. Joint torques in a freely walking insect reveal distinct functions of leg joints in propulsion and posture control , 2016, Proceedings of the Royal Society B: Biological Sciences.
[70] Edweard Muybridge. Animal Locomotion: An electro-photographic investigation of consecutive phases of animal movements, 1887 , 2019 .