Gyroscopic sensing in the wings of the hawkmoth Manduca sexta: the role of sensor location and directional sensitivity
暂无分享,去创建一个
[1] Maurice Petyt,et al. Introduction to finite element vibration analysis , 1990 .
[2] Frédéric Boyer,et al. A hybrid dynamic model for bio-inspired robots with soft appendages - Application to a bio-inspired flexible flapping-wing micro air vehicle. , 2013 .
[3] Andrew M. Mountcastle,et al. Aerodynamic and functional consequences of wing compliance , 2009 .
[4] B. Stanford,et al. Shape, Structure, and Kinematic Parameterization of a Power-Optimal Hovering Wing , 2010 .
[5] Toshiyuki Nakata,et al. A fluid-structure interaction model of insect flight with flexible wings , 2012, J. Comput. Phys..
[6] R. Elson. Flight motor neurone reflexes driven by strain-sensitive wing mechanoreceptors in the locust , 1987, Journal of Comparative Physiology A.
[7] Michael H. Dickinson,et al. Comparison of Encoding Properties of Campaniform Sensilla on the Fly Wing , 1990 .
[8] Arthur J. Krener,et al. Measures of unobservability , 2009, Proceedings of the 48h IEEE Conference on Decision and Control (CDC) held jointly with 2009 28th Chinese Control Conference.
[9] T. Daniel,et al. The Journal of Experimental Biology 206, 2979-2987 © 2003 The Company of Biologists Ltd , 2022 .
[10] Brian T. Hinson,et al. Observability-Based Guidance and Sensor Placement , 2014 .
[11] J. Pringle. Proprioception In Insects: II. The Action Of The Campaniform Sensilla On The Legs , 1938 .
[12] A. R. Ennos. The kinematics and aerodynamics of the free flight of some diptera , 1989 .
[13] J Palka,et al. Physiological properties, time of development, and central projection are correlated in the wing mechanoreceptors of Drosophila , 1987, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[14] M. Dickinson,et al. The aerodynamic effects of wing rotation and a revised quasi-steady model of flapping flight. , 2002, The Journal of experimental biology.
[15] T L Hedrick,et al. Flight control in the hawkmoth Manduca sexta: the inverse problem of hovering , 2006, Journal of Experimental Biology.
[16] Milena Anguelova,et al. Nonlinear observability and identifiability: General theory and a case study of a kinetic model for S. Cerevisiae , 2004 .
[17] Tyson L. Hedrick,et al. A multi-fidelity modelling approach for evaluation and optimization of wing stroke aerodynamics in flapping flight , 2013, Journal of Fluid Mechanics.
[18] James Diebel,et al. Representing Attitude : Euler Angles , Unit Quaternions , and Rotation Vectors , 2006 .
[19] Kristi A. Morgansen,et al. Observability-Based Optimal Sensor Placement for Flapping Airfoil Wake Estimation , 2014 .
[20] Sanjay P Sane,et al. The aerodynamics of insect flight , 2003, Journal of Experimental Biology.
[21] Sun Ma. Aerodynamics of insect flight , 2015 .
[22] B. H. Dickerson,et al. A new twist on gyroscopic sensing: body rotations lead to torsion in flapping, flexing insect wings , 2015, Journal of The Royal Society Interface.
[23] M. Dickinson,et al. The control of flight force by a flapping wing: lift and drag production. , 2001, The Journal of experimental biology.
[24] Adrian L. R. Thomas,et al. Photogrammetric reconstruction of high-resolution surface topographies and deformable wing kinematics of tethered locusts and free-flying hoverflies , 2009, Journal of The Royal Society Interface.
[25] K. M. Chapman,et al. Proprioceptive indentation of the campaniform sensilla of cockroach legs , 1975, Journal of comparative physiology.
[26] T. Daniel,et al. Into thin air: contributions of aerodynamic and inertial-elastic forces to wing bending in the hawkmoth Manduca sexta , 2003, Journal of Experimental Biology.
[27] Stephen P. Boyd,et al. Graph Implementations for Nonsmooth Convex Programs , 2008, Recent Advances in Learning and Control.
[28] Toshiyuki Nakata,et al. Aerodynamic performance of a hovering hawkmoth with flexible wings: a computational approach , 2012, Proceedings of the Royal Society B: Biological Sciences.
[29] B. H. Dickerson,et al. Control of moth flight posture is mediated by wing mechanosensory feedback , 2014, Journal of Experimental Biology.
[30] M. Dickinson. Directional Sensitivity and Mechanical Coupling Dynamics of Campaniform Sensilla During Chordwise Deformations of the Fly Wing , 1992 .
[31] G A Horridge,et al. Fly photoreceptors - II. Spectral and polarized light sensitivity in the drone fly Eristalis , 1975, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[32] Adrian L. R. Thomas,et al. Operation of the alula as an indicator of gear change in hoverflies , 2012, Journal of The Royal Society Interface.
[33] C. Ellington,et al. The mechanics of flight in the hawkmoth Manduca sexta. I. Kinematics of hovering and forward flight. , 1997, The Journal of experimental biology.
[34] Tsevi Beatus,et al. Wing-pitch modulation in maneuvering fruit flies is explained by an interplay between aerodynamics and a torsional spring. , 2015, Physical review. E, Statistical, nonlinear, and soft matter physics.
[35] J. Gonçalves,et al. Nonlinear controllability and observability with applications to gradient systems , 1981 .
[36] Matthew J. McHenry,et al. The biomechanics of sensory organs , 2009 .
[37] M. Dickinson,et al. Wing rotation and the aerodynamic basis of insect flight. , 1999, Science.