The mapping of visual space by dragonfly lateral ocelli
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Gert Stange | Joshua van Kleef | J. V. Kleef | G. Stange | Richard P. Berry | Richard Berry | J. Kleef
[1] E. Warrant,et al. Form vision in the insect dorsal ocelli: An anatomical and optical analysis of the Locust Ocelli , 2007, Vision Research.
[2] L. Goodman,et al. Lateral ocellar nerve projections in the dragonfly brain , 1978, Cell and Tissue Research.
[3] P. Cornwell. The Functions of the Ocelli of Calliphora (Diptera) and Locusta (Orthoptera) , 1955 .
[4] P. Ruck. Electrophysiology of the Insect Dorsal Ocellus , 1961, The Journal of general physiology.
[5] Eric J. Warrant,et al. Arthropod eye design and the physical limits to spatial resolving power , 1993, Progress in Neurobiology.
[6] P. Ruck. Electrophysiology of the Insect Dorsal Ocellus , 1961, The Journal of general physiology.
[7] R. Hengstenberg,et al. Optical properties of the ocelli of Calliphora erythrocephala and their role in the dorsal light response , 1993, Journal of Comparative Physiology A.
[8] H. Homann. Zum Problem der Ocellenfunktion bei den Insekten , 1924, Zeitschrift für vergleichende Physiologie.
[9] S. Laughlin,et al. A motion-sensitive neurone responds to signals from the two visual systems of the blowfly, the compound eyes and ocelli , 2006, Journal of Experimental Biology.
[10] Michael F. Land,et al. Optics and Vision in Invertebrates , 1981 .
[11] U. Homberg,et al. Organization and evolutionary trends of primary olfactory brain centers in Tetraconata (Crustacea+Hexapoda) , 2005 .
[12] P. Simmons. Transmission mediated with and without spikes at connexions between large second-order neurones of locust ocelli , 1982, Journal of comparative physiology.
[13] J. Hildebrand,et al. Structure and function of the deutocerebrum in insects. , 1989, Annual review of entomology.
[14] Philip Ruck,et al. A comparison of the electrical responses of compound eyes and dorsal ocelli in four insect species , 1958 .
[15] M. Renner,et al. The ocellus of the cockroach, Periplaneta americana (Blattariae) , 1976, Cell and Tissue Research.
[16] L. Goodman,et al. Relative spectral sensitivity and reverse purkinje shift in identified L neurons of the ocellar retina , 1981, Journal of comparative physiology.
[17] U. Homberg,et al. Ocellar interneurons in the honeybee , 1984, Journal of Comparative Physiology A.
[18] Heinrich H. Bülthoff,et al. Behavior-oriented vision for biomimetic flight control , 2002 .
[19] T. Labhart,et al. The dorsal eye of the dragonfly Sympetrum: specializations for prey detection against the blue sky , 1995, Journal of Comparative Physiology A.
[20] P. Simmons. The operation of connexions between photoreceptors and large second-order neurones in dragonfly ocelli , 2004, Journal of comparative physiology.
[21] L. Goodman,et al. Organisation and Physiology of the Insect Dorsal Ocellar System , 1981 .
[22] F. Campbell,et al. Optical quality of the human eye , 1966, The Journal of physiology.
[23] Mandyam V. Srinivasan,et al. Bioinspired Engineering of Exploration Systems: A Horizon Sensor/Attitude Reference System Based on the Dragonfly Ocelli for Mars Exploration Applications , 2003, J. Field Robotics.
[24] H. Kondo. Efferent system of the lateral ocellus in the dragonfly: Its relationships with the ocellar afferent units, the compound eyes, and the wing sensory system , 1978, Journal of comparative physiology.
[25] M. Mizunami,et al. Functional diversity of neural organization in insect ocellar systems , 1995, Vision Research.
[26] Eric J. Warrant,et al. Absorption of white light in photoreceptors , 1998, Vision Research.
[27] Andrew Charles James,et al. A Spatiotemporal White Noise Analysis of Photoreceptor Responses to UV and Green Light in the Dragonfly Median Ocellus , 2005, The Journal of general physiology.
[28] B. Rosser,et al. A Study of the Afferent Pathways of the Dragonfly Lateral Ocellus from Extra-Cellularly Recorded Spike Discharges , 1974 .
[29] C. Taylor. Contribution of Compound Eyes and Ocelli to Steering Of Locusts in Flight: I. Behavioural Analysis , 1981 .
[30] J. Patterson,et al. Intracellular responses of procion filled cells and whole nerve cobalt impregnation in the dragonfly median ocellus , 1980, Journal of comparative physiology.
[31] D. G. Green,et al. Optical and retinal factors affecting visual resolution. , 1965, The Journal of physiology.
[32] Jonathon Howard,et al. An Ocellar Dorsal Light Response in a Dragonfly , 1979 .
[33] P. Ruck,et al. The structure of the insect dorsal ocellus. I. General organization of the ocellus in dragonflies , 1964 .
[34] J. Dowling,et al. Neural Organization of the Median Ocellus of the Dragonfly , 1972, The Journal of general physiology.
[35] R. Wehner. Spatial Vision in Arthropods , 1981 .
[36] D. Parry. The function of the insect ocellus. , 1947, The Journal of experimental biology.
[37] Gert Stange,et al. The ocellar component of flight equilibrium control in dragonflies , 1981, Journal of comparative physiology.
[38] G. Stange,et al. Anisotropic imaging in the dragonfly median ocellus: a matched filter for horizon detection , 2002, Journal of Comparative Physiology A.
[39] Visually conditioned activity in the cervical neural chain of the dragonfly , 1971 .
[40] Eric J. Warrant,et al. Form vision in the insect dorsal ocelli: An anatomical and optical analysis of the dragonfly median ocellus , 2007, Vision Research.
[41] W. Wcislo,et al. Ocellar optics in nocturnal and diurnal bees and wasps. , 2006, Arthropod structure & development.
[42] Martin Wilson,et al. The functional organisation of locust ocelli , 1978, Journal of comparative physiology.
[43] A. James,et al. Effect of temporal sparseness and dichoptic presentation on multifocal visual evoked potentials , 2005, Visual Neuroscience.
[44] Gert Stange,et al. The mapping of visual space by identified large second-order neurons in the dragonfly median ocellus , 2006, Journal of Comparative Physiology A.