Sexual Dimorphism in the Hoverfly Motion Vision Pathway
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[1] M. F. LAND,et al. Head Movement of Flies during Visually Guided Flight , 1973, Nature.
[2] Nicholas J. Strausfeld,et al. Sexually dimorphic interneuron arrangements in the fly visual system , 1980, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[3] W. Wellington,et al. CONTRASTS IN THE TERRITORIAL BEHAVIOUR OF THREE SPECIES OF HOVER FLIES (DIPTERA: SYRPHIDAE) , 1983, The Canadian Entomologist.
[4] Heinrich H. Bülthoff,et al. Three-Dimensional Reconstruction and Stereoscopic Display of Neurons in the Fly Visual System , 1983 .
[5] K. Hausen. The Lobula-Complex of the Fly: Structure, Function and Significance in Visual Behaviour , 1984 .
[6] R. Shapley,et al. Photoreception and Vision in Invertebrates , 1984, NATO ASI Series.
[7] D. G. Stavenga,et al. Spectral sensitivity of blowfly photoreceptors: Dependence on waveguide effects and pigment concentration , 1986, Vision Research.
[8] Martin Egelhaaf,et al. Neural Mechanisms of Visual Course Control in Insects , 1989 .
[9] R. Hardie,et al. Facets of Vision , 1989, Springer Berlin Heidelberg.
[10] Roland Hengstenberg,et al. Gaze control in the blowfly Calliphora: a multisensory, two-stage integration process , 1991 .
[11] C. Ellington,et al. Beyond the vertebrates: achieving maximum power during flight in insects and hummingbirds. , 1994, Advances in veterinary science and comparative medicine.
[12] R. Hengstenberg,et al. Estimation of self-motion by optic flow processing in single visual interneurons , 1996, Nature.
[13] Martin Egelhaaf,et al. INTRINSIC PROPERTIES OF BIOLOGICAL MOTION DETECTORS PREVENT THE OPTOMOTOR CONTROL SYSTEM FROM GETTING UNSTABLE , 1996 .
[14] S. Laughlin,et al. Spatio-temporal properties of motion detectors matched to low image velocities in hovering insects , 1997, Vision Research.
[15] N. Strausfeld,et al. The relevance of neural architecture to visual performance: phylogenetic conservation and variation in Dipteran visual systems. , 1997, The Journal of comparative neurology.
[16] Holger G. Krapp,et al. A fast stimulus procedure to determine local receptive field properties of motion-sensitive visual interneurons , 1997, Vision Research.
[17] R Hengstenberg,et al. Dendritic structure and receptive-field organization of optic flow processing interneurons in the fly. , 1998, Journal of neurophysiology.
[18] Hateren,et al. Blowfly flight and optic flow. II. Head movements during flight , 1999, The Journal of experimental biology.
[19] Holger G. Krapp,et al. Wide-field, motion-sensitive neurons and matched filters for optic flow fields , 2000, Biological Cybernetics.
[20] R. Hengstenberg,et al. Binocular contributions to optic flow processing in the fly visual system. , 2001, Journal of neurophysiology.
[21] R O Dror,et al. Accuracy of velocity estimation by Reichardt correlators. , 2001, Journal of the Optical Society of America. A, Optics, image science, and vision.
[22] A. Borst,et al. Neural networks in the cockpit of the fly , 2002, Journal of Comparative Physiology A.
[23] N. Strausfeld,et al. The functional organization of male-specific visual neurons in flies , 1991, Journal of Comparative Physiology A.
[24] M. Frye,et al. Visual receptive field properties of feature detecting neurons in the dragonfly , 1995, Journal of Comparative Physiology A.
[25] M. F. Land,et al. Maps of the acute zones of fly eyes , 1985, Journal of Comparative Physiology A.
[26] T. Collett,et al. How hoverflies compute interception courses , 1978, Journal of comparative physiology.
[27] K. Hausen. Motion sensitive interneurons in the optomotor system of the fly , 1982, Biological Cybernetics.
[28] T. S. Collett,et al. Angular tracking and the optomotor response an analysis of visual reflex interaction in a hoverfly , 1980, Journal of comparative physiology.
[29] J. P. Lindemann,et al. Function of a Fly Motion-Sensitive Neuron Matches Eye Movements during Free Flight , 2005, PLoS biology.
[30] J. V. van Hateren,et al. Encoding of naturalistic optic flow by a population of blowfly motion-sensitive neurons. , 2006, Journal of neurophysiology.
[31] A. Straw,et al. A `bright zone' in male hoverfly (Eristalis tenax) eyes and associated faster motion detection and increased contrast sensitivity , 2006, Journal of Experimental Biology.
[32] M. Egelhaaf,et al. Characterisation of a blowfly male-specific neuron using behaviourally generated visual stimuli , 2007, Journal of Comparative Physiology A.
[33] David C. O'Carroll,et al. Retinotopic Organization of Small-Field-Target-Detecting Neurons in the Insect Visual System , 2007, Current Biology.