Organization of visual axes in the compound eye of the flyMusca domestica L. and behavioural consequences
暂无分享,去创建一个
[1] D. Stavenga. The neural superposition eye and its optical demands , 1975, Journal of comparative physiology.
[2] D. G. Stavenga,et al. Formalism for the neural network of visual systems , 1975, Biological Cybernetics.
[3] Werner Reichardt,et al. A theory of the pattern induced flight orientation of the fly Musca domestica II , 1975, Biological Cybernetics.
[4] H. Eckert,et al. Intracellular recording and staining of directionally selective motion detecting neurons in fly optic lobe , 1975, Vision Research.
[5] T. Collett,et al. Chasing behaviour of houseflies (Fannia canicularis) , 1974, Journal of comparative physiology.
[6] Werner Reichardt,et al. Musterinduzierte Flugorientierung , 1973, Naturwissenschaften.
[7] Hendrik Eckert,et al. Optomotorische Untersuchungen am visuellen System der Stubenfliege Musca domestica L , 1973, Kybernetik.
[8] V. Braitenberg. Periodic structures and structural gradients in the visual ganglia of the fly , 1972 .
[9] N. Franceschini,et al. Les phénomènes de pseudopupille dans l'œil composé deDrosophila , 1971, Kybernetik.
[10] Gilbert D. McCann,et al. Binocular interactions of motion detection fibers in the optic lobes of flies , 1971, Kybernetik.
[11] K. Kirschfeld. Aufnahme und Verarbeitung optischer Daten im Komplexauge von Insekten , 1971, Naturwissenschaften.
[12] V. Braitenberg,et al. Ordnung und Orientierung der Elemente im Sehsystem der Fliege , 1970, Kybernetik.
[13] G. D. Mccann,et al. Fundamental Properties of Intensity, Form, and Motion Perception in the Visual Nervous Systems of Calliphora phaenicia and Musca domestica , 1969, The Journal of general physiology.
[14] K. Kirschfeld,et al. Optische Eigenschaften der Ommatidien im Komplexauge von Musca , 1968, Kybernetik.
[15] G. Seitz,et al. Der Strahlengang im Appositionsauge von Calliphora erythrocephala (Meig.) , 1968, Zeitschrift für vergleichende Physiologie.
[16] G. D. Mccann,et al. Optomotor response studies of insect vision , 1965, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[17] V. Braitenberg. Patterns of projection in the visual system of the fly. I. Retina-lamina projections , 2004, Experimental Brain Research.
[18] V. Braitenberg,et al. Patterns of projection in the visual system of the fly II. Quantitative aspects of second order neurons in relation to models of movement perception , 2004, Experimental Brain Research.
[19] K. Kirschfeld,et al. Die projektion der optischen umwelt auf das raster der rhabdomere im komplexauge von Musca , 2004, Experimental Brain Research.
[20] N. Franceschini,et al. Etude optique in vivo des éléments photorécepteurs dans l'œil composé de Drosophila , 2004, Kybernetik.
[21] G. Bruce Boschek,et al. On the fine structure of the peripheral retina and lamina ganglionaris of the fly, Musca domestica , 2004, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[22] Doekele G. Stavenga,et al. A.6 Optical Qualities of the Fly Eye — An Approach from the Side of Geometrical, Physical and Waveguide Optics , 1975 .
[23] Nicolas Franceschini,et al. Sampling of the Visual Environment by the Compound Eye of the Fly: Fundamentals and Applications , 1975 .
[24] Nicholas J. Strausfeld,et al. Principles of the Mosaic Organisation in the Visual System’s Neuropil of Musca domestica L , 1973 .
[25] Jaroslav Král,et al. A note on grammars with regular restrictions , 1973, Kybernetika.
[26] O. Trujillo-Cenóz,et al. The Structural Organization of the Compound Eye in Insects , 1972 .
[27] Karl Georg Götz,et al. Processing of Cues from the Moving Environment in the Drosophila Navigation System , 1972 .
[28] Boschek Cb. On the fine structure of the peripheral retina and lamina ganglionaris of the fly, Musca domestica. , 1971 .