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Egelhaaf, M (1985). On the neuronal basis of figure\320ground discrimination by relative motion in the visual system of the fly. I. Behavioural constraints imposed on the neuronal network and the role of the optomotor system. Biol. Cybern 52, 123-.

Egelhaaf, M (1985). On the neuronal basis of figure\320ground discrimination by relative motion in the visual system of the fly. II. Figure-detection cells, a new class of visual interneurons. Biol. Cybern 52, 195-.

Egelhaaf, M. and Borst, A (1993). A look into the cockpit of the fly: Visual orientation, algorithms and identified neurons. J. Neurosci 13, 4563-.[Medline]

Egelhaaf, M. and Warzecha, A (1999). Encoding of motion in real time by the fly visual system. Curr. Opin. Neurobiol 9, 454-.[Medline]

Fermi, G. and Reichardt, W (1963). Optomotorische Reaktionen der Fliege Musca domestica. Kybernetik 2, 15-.

G\232tz, K. G (1964). Optomotorische Untersuchungen des visuellen Systems einiger Augenmutanten der Fruchtfliege Drosophila. Kybernetik 2, 77-.[Medline]

G\232tz, K. G (1968). Flight control in Drosophila by visual perception of motion. Kybernetik 4, 199-.[Medline]

G\232tz, K. G (1975). The optomotor equilibrium of the Drosophila navigation system. J. Comp. Physiol 99, 187-.

Gronenberg, W. and Strausfeld, N. J (1990). Descending neurons supplying the neck and flight motor of Diptera: Physiological and anatomical characteristics. J. Comp. Neurol 302, 973-.[Medline]

Gronenberg, W. and Strausfeld, N. J (1992). Premotor descending neurons responding selectively to local visual stimuli in flies. J. Comp. Neurol 316, 87-.[Medline]

Hausen, K (1982). Motion sensitive interneurons in the optomotor system of the fly. II. The horizontal cells: Receptive field organization and response characteristics. Biol. Cybern 46, 67-.

Kimmerle, B., Egelhaaf, M. and Srinivasan, M. V (1996). Object detection by relative motion in freely flying flies. Naturwissenschaften 83, 380-.

Miles, F. A. and Kawano, K (1987). Visual stabilization of the eyes. Trends Neurosci 10, 153-.

Reichardt, W., Poggio, T. and Hausen, K (1983). Figure\320ground discrimination by relative movement in the visual system of the fly. Part II. Towards the neural circuitry. Biol. Cybern 46, 1-.

Srinivasan, M. V., Lehrer, M. and Horridge, G. A (1990). Visualfigure\320ground discrimination in the honeybee: the role of motion parallax at boundaries. Proc. R. Soc. Lond. B 238, 331-.

Staudacher, E. and Schildberger, K (1998). Gating of sensory responses of descending brain neurones during walking in crickets. J. Exp. Biol 201, 559-.[Abstract/Free Full Text]

van Doorn, A. J. and Koenderink, J. J (1982). Visibility of movement gradients. Biol. Cybern 44, 167-.[Medline]

van Doorn, A. J. and Koenderink, J. J (1983). Detectability of velocity gradients in moving random-dot patterns. Vision Res 23, 799-.[Medline]

Virsik, R. P. and Reichardt, W (1976). Detection and tracking of moving objects by the fly Musca domestica. Biol. Cybern 23, 83-.




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B. Kimmerle and M. Egelhaaf
Performance of Fly Visual Interneurons during Object Fixation
J. Neurosci., August 15, 2000; 20(16): 6256 - 6266.
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This Article
Right arrow Summary Freely available
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