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265 Publikationen

1989 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774131
Borst, A., & Egelhaaf, M., 1989. Principles of visual motion detection. Trends in Neurosciences, 12(8), p 297-306.
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1989 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1773386
Egelhaaf, M., Borst, A., & Reichardt, W., 1989. Computational structure of a biological motion-detection system as revealed by local detector analysis in the fly's nervous system. Journal of the Optical Society of America, A: Optics, Image Science, and Vision, 6(7), p 1070-1087.
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1989 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1773404
Egelhaaf, M., & Borst, A., 1989. Transient and steady-state response properties of movement detectors. Journal of the Optical Society of America, A: Optics, Image Science, and Vision, 6(1), p 116-127.
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1988 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774110
Reichardt, W., Egelhaaf, M., & Schlögel, R.W., 1988. Movement detectors provide sufficient information for local computation of 2-D velocity field. Naturwissenschaften, 75(6), p 313-315.
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1988 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774107
Reichardt, W., & Egelhaaf, M., 1988. Properties of individual movement detectors as derived from behavioural experiments on the visual system of the fly. Biological Cybernetics, 58(5), p 287-294.
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1988 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774114
Egelhaaf, M., et al., 1988. Visual course control in flies relies on neuronal computation of object and background motion. Trends in Neurosciences, 11(8), p 351-358.
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1988 | Sammelwerksbeitrag | Veröffentlicht | PUB-ID: 1776715
Reichardt, W., Schlögel, R.W., & Egelhaaf, M., 1988. Movement detectors of the correlation type provide sufficient information for local computation of the 2-D velocity field. In H. Haken, ed. Neural and synergetic computers: proceedings of the international symposium at Schloß Elmau, Bavaria, June 13 - 17, 1988. Springer series in synergetics ; 42. Berlin: Springer, pp. 170-179.
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1987 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774099
Egelhaaf, M., & Reichardt, W., 1987. Dynamic response properties of movement detectors: Theoretical analysis and electrophysiological investigation in the visual system of the fly. Biological Cybernetics, 56(2-3), p 69-87.
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1987 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774102
Borst, A., & Egelhaaf, M., 1987. Temporal modulation of luminance adapts time constant of fly movement detectors. Biological Cybernetics, 56(4), p 209-215.
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1987 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774105
Egelhaaf, M., 1987. Dynamic properties of two control systems underlying visually guided turning in house-flies. Journal of Comparative Physiology, A: Sensory Neural and Behavioral Physiology, 161(6), p 777-783.
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1985 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774082
Egelhaaf, M., 1985. On the neuronal basis of figure-ground discrimination by relative motion in the visual system of the fly. 2: Figure-dectection cells, a new class of visual interneurones. Biological Cybernetics, 52(3), p 195-209.
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1985 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774080
Egelhaaf, M., 1985. On the neuronal basis of figure-ground discrimination by relative motion in the visual system of the fly. 1: Behavioural constraints imposed on the neuronal network and the role of the optomotor system. Biological Cybernetics, 52(2), p 123-140.
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1985 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774084
Egelhaaf, M., 1985. On the neuronal basis of figure-ground discrimination by relative motion in the visual system of the fly. 3: Possible input circuitries and behavioural significance of the FD-cells. Biological Cybernetics, 52(4), p 267-280.
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1983 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774078
Egelhaaf, M., & Benjamin, P.R., 1983. Coupled neuronal oscillators in the snail Lymnaea stagnalis: endogenous cellular properties and network interactions. Journal of Experimental Biology, 102, p 93-114.
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1982 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 1774076
Egelhaaf, M., & Benjamin, P.R., 1982. Inhibition by recurrent excitation: a mechanism for spike synchronization in a network of coupled neuronal oscillators. Journal of Experimental Biology, 96, p 447-451.
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