Early processing of colour and motion in a mosaic visual system.
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[1] Gilbert D. McCann,et al. Spectral and Polarization Sensitivity of the Dipteran Visual System , 1972, The Journal of general physiology.
[2] M. Wilcox,et al. Stimulated drug uptake in a photoreceptor cell , 1984, Neuroscience Letters.
[3] T. Ohtsuka. Fluorescence from colorless oil droplets: A new criterion for identification of cone photoreceptors , 1984, Neuroscience Letters.
[4] H. Kolb,et al. Light and electron microscopy of the photoreceptors in the retina of the red‐eared slider, Pseudemys scripta elegans , 1982, The Journal of comparative neurology.
[5] J. Dowling,et al. Organization of the retina of the mudpuppy, Necturus maculosus. II. Intracellular recording. , 1969, Journal of neurophysiology.
[6] R. Hengstenberg. Spike responses of ‘non-spiking’ visual interneurone , 1977, Nature.
[7] W Reichardt,et al. Visual control of orientation behaviour in the fly: Part I. A quantitative analysis , 1976, Quarterly Reviews of Biophysics.
[8] A. Hodgkin,et al. Detection and resolution of visual stimuli by turtle photoreceptors , 1973, The Journal of physiology.
[9] O. Trujillo-Cenóz,et al. Compound eye of dipterans: anatomical basis for integration--an electron microscope study. , 1966, Journal of ultrastructure research.
[10] Jaroslav Král,et al. A note on grammars with regular restrictions , 1973, Kybernetika.
[11] D W Arnett,et al. Spatial and temporal integration properties of units in first optic ganglion of dipterans. , 1972, Journal of neurophysiology.
[12] W. H. Miller,et al. FINE STRUCTURE OF SOME INVERTEBRATE PHOTORECEPTORS , 1958, Annals of the New York Academy of Sciences.
[13] A. Mariani,et al. Photoreceptors and oil droplet colors in the red area of the pigeon retina , 1978, The Journal of comparative neurology.
[14] R. Barlow,et al. Circadian clock in Limulus brain increases response and decreases noise of retinal photoreceptors , 1980, Nature.
[15] H. Wunderer,et al. Morphological differentiation of the central visual cells R7/8 in various regions of the blowfly eye. , 1982, Tissue & cell.
[16] A. Kaneko. Physiological and morphological identification of horizontal, bipolar and amacrine cells in goldfish retina , 1970, The Journal of physiology.
[17] T. Főrster,et al. 10th Spiers Memorial Lecture. Transfer mechanisms of electronic excitation , 1959 .
[18] H. Autrum,et al. Spectral Sensitivity of Single Visual Cells , 1961, Nature.
[19] N. Franceschini,et al. FLUORESCENCE OF HOUSEFLY VISUAL PIGMENT , 1984 .
[20] W. McFarland,et al. Part III: The evolution of photopic visual pigments in fishes , 1975, Vision Research.
[21] M. Sanders. Handbook of Sensory Physiology , 1975 .
[22] H. Wunderer,et al. Fine structure of ommatidia at the dorsal eye margin of Calliphora erythrocephala meigen (Diptera: Calliphoridae): An eye region specialised for the detection of polarized light , 1982 .
[23] N. Franceschini,et al. The senitizing pigment in fly photoreceptors: Properties and candidates , 1983 .
[24] G A Horridge,et al. The separation of visual axes in apposition compound eyes. , 1978, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[25] N. Franceschini,et al. Evidence for a sensitising pigment in fly photoreceptors , 1977, Nature.
[26] K Kirschfeld,et al. Fluorescence of photoreceptor cells observed in vivo. , 1981, Science.
[27] R. Marc,et al. Chromatic organization of primate cones. , 1977, Science.
[28] N. Strausfeld. Atlas of an Insect Brain , 1976, Springer Berlin Heidelberg.
[29] R. Barlow,et al. Limulus brain modulates the structure and function of the lateral eyes. , 1980, Science.
[30] M Wilcox,et al. Illumination induces dye incorporation in photoreceptor cells. , 1984, Science.
[31] R. Leigh,et al. Autofluorescence of Visual Receptors , 1969, Nature.
[32] Integration and Analysis of Movement Information by the Visual System of Flies , 1970, Nature.
[33] H. Barlow,et al. The mechanism of directionally selective units in rabbit's retina. , 1965, The Journal of physiology.
[34] Fly photoreceptor fluorescence is related to UV sensitivity , 1979, Nature.
[35] B. Bush,et al. AFFERENT VISUAL RESPONSES IN THE OPTIC NERVE OF THE CRAB, PODOPHTHALMUS. , 1964, Journal of cellular and comparative physiology.
[36] N. Franceschini,et al. Sexual dimorphism in a photoreceptor , 1981, Nature.
[37] G. D. Mccann,et al. Motion detection by interneurons of optic lobes and brain of the flies Calliphora phaenicia and Musca domestica. , 1968, Journal of neurophysiology.
[38] D. Hubel,et al. Receptive fields of single neurones in the cat's striate cortex , 1959, The Journal of physiology.
[39] D. Keehn,et al. Two Types of Neurones Sensitive to Motion in the Optic Lobe of the Fly , 1966, Nature.
[40] S. Schein,et al. Staining of blue-sensitive cones of the macaque retina by a fluorescent dye. , 1981, Science.
[41] Boschek Cb. On the fine structure of the peripheral retina and lamina ganglionaris of the fly, Musca domestica. , 1971 .
[42] G. L. Walls,et al. THE INTRA-OCULAR COLOUR-FILTERS OF VERTEBRATES* , 1933, The British journal of ophthalmology.
[43] H. Eckert,et al. Response properties of dipteran giant visual interneurones involved in control of optomotor behaviour , 1978, Nature.