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Publikationsliste Abteilung Reichardt

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1988

Artikel (9):

Borst A und Bahde S (März-1988) Visual information processing in the fly's landing system Journal of Comparative Physiology A 163(2) 167–173.
CiteID: BorstB1988_2
Werner A, Menzel R und Wehrhahn C (Januar-1988) Color constancy in the honeybee Journal of Neuroscience 8(1) 156-159.
CiteID: WernerMW1988

Beiträge zu Tagungsbänden (2):

Reichardt W, Schlögl RW und Egelhaaf M (Juni-1988) Movement detectors of the correlation type provide sufficient information for local computation of the 2-D velocity field In: Neural and Synergetic Computers, , International Symposium on Neural and Synergetic Computers, Springer, Berlin, Germany, 170-179, Series: Springer Series in Synergetics ; 42.
pdfCiteID: 1654
Mitchison G, Toulouse G und Wehrhahn C (1988) Discussion: The temporal integration of 3-D structure from motion: a computational and psychophysical study In: Organization of Neural Networks: Structures and Models, , 2nd Meeting on Theoretical Neuroscience 1986, VCH, Weinheim, Germany, 261-266.
CiteID: 3954

Beiträge zu Büchern (2):

Marr D und Poggio T: A computational theory of human stereo vision, 534–547. In: Readings in Cognitive Science: A Perspective from Psychology and Artificial Intelligence, (Ed) A. Collins, Morgan Kaufmann, San Mateo, CA, USA, (1988).
CiteID: MarrP1988
Reichardt W: Fly, visually induced behavior, 27-29. In: Sensory System I: Vision and Visual Systems, (Ed) R. Held, Birkhäuser, Boston, MA, USA, (1988).
CiteID: 1653

Poster (1):

Zanker JM (September-1988): On the directional selectivity of motion detectors, Eleventh European Conference on Visual Perception (ECVP 1988), Bristol, UK, Perception, 17(3) 404.
CiteID: Zanker1988_2

1987

Artikel (8):

Wehrhahn C (November-1987) Comparison of color sensation in dichoptic and in normal vision Biological Cybernetics 57(4-5) 213-215.
CiteID: 1374
Egelhaaf M (November-1987) Dynamic properties of two control systems underlying visually guided turning in house-flies Journal of Comparative Physiology A 161(6) 777–783.
CiteID: Egelhaaf1987
Reichardt W (Juli-1987) Evaluation of optical motion information by movement detectors Journal of Comparative Physiology A 161(4) 533-547.
CiteID: 1657
Borst A und Bahde S (Juni-1987) Comparison between the movement detection systems underlying the optomotor and the landing response in the housefly Biological Cybernetics 56(4) 217–224.
CiteID: BorstB1987
Borst A und Egelhaaf M (Juni-1987) Temporal modulation of luminance adapts time constant of fly movement detectors Biological Cybernetics 56(4) 209–215.
CiteID: BorstE1987
Reichardt W (Mai-1987) Computation of optical motion by movement detectors Biophysical Chemistry 26(2-3) 263-278.
CiteID: 1659
Egelhaaf M und Reichardt W (Mai-1987) Dynamic response properties of movement detectors: theoretical analysis and electrophysiological investigation in the visual system of the fly Biological Cybernetics 56(2-3) 69-87.
CiteID: 1660
Guo A und Reichardt W (Februar-1987) An estimation of the time constant of movement detectors Naturwissenschaften 74(2) 91-91.
CiteID: 1661

Beiträge zu Büchern (1):

Reichardt W: Fly, visually induced behavior, 434-436. In: Encyclopedia of Neuroscience, (Ed) G. Adelman, Birkhäuser, Boston, MA, USA, (1987).
CiteID: 1658

1986

Artikel (7):

Borst A und Bahde S (Oktober-1986) What kind of movement detector is triggering the landing response of the housefly? Biological Cybernetics 55(1) 59–69.
CiteID: BorstB1986
Borst A (September-1986) Time course of the Houseflies' landing response Biological Cybernetics 54(6) 379–383.
CiteID: Borst1986
Wehrhahn C (Juli-1986) Motion sensitive yaw torque responses of the housefly Musca: a quantitative study Biological Cybernetics 55(4) 275-280.
CiteID: 1409
Egelhaaf M (Juni-1986) On the neuronal basis of figure-ground 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 Biological Cybernetics 52(2) 123-140.
CiteID: Egelhaaf1986
Reichardt W und Guo A-K (März-1986) Elementary pattern discrimination (Behavioural experiments with the fly Musca domestica). Biological Cybernetics 53(5) 285-306.
CiteID: 1663
Reichardt W (Januar-1986) Processing of optical information by the visual system of the fly Vision Research 26(1) 113-126.
CiteID: 1664
Reichardt W (1986) Musterinduziertes Flugverhalten der Fliege Musca domestica Physikalische Blätter 42 159-163.
CiteID: 1662

1985

Artikel (4):

Egelhaaf M (August-1985) On the neuronal basis of figure-ground discrimination by relative motion in the visual system of the fly Biological Cybernetics 52(4) 267–280.
CiteID: Egelhaaf1985
Egelhaaf M (Juli-1985) On the neuronal basis of figure-ground discrimination by relative motion in the visual system of the fly - II. Figure-detection cells, a new class of visual interneurones Biological Cybernetics 52(3) 195-209.
CiteID: Egelhaaf1985_2
Heisenberg M, Borst A, Wagner S und Byers D (Juni-1985) Drosophila Mushroom Body Mutants are Deficient in Olfactory Learning Journal of Neurogenetics 2(1) 1-30.
CiteID: HeisenbergBWB1985
Reichardt W (April-1985) The visual system of insects: Processing of optical information Rivista di Biologia 78(1) 9-42.
CiteID: 1666

Beiträge zu Tagungsbänden (1):

Reichardt W (Mai-1985) Computation of sensory information by the visual system of the fly (from behaviour to neuronal circuitry) In: Complex systems: Operational approaches in neurobiology, physics, and computers, , International Symposium on Synergetics 1985, Springer, Berlin, Germany, 38-57, Series: Springer Series in Synergetics ; 31.
CiteID: 1665

Beiträge zu Büchern (1):

Wehrhahn C: Visual guidance of flies during flight, 673-684. In: Comprehensive Insect Physiology, Biochemistry and Pharmacology, (Ed) G.A. Kerkut, Pergamon Press, Oxford, (1985).
CiteID: 1411

1984

Artikel (3):

Reichardt W (Dezember-1984) Gehirn und Computer Elektrotechnische Zeitschrift: ETZ 105(23) 1280-1281.
CiteID: 1667
Götz KG und Wehrhahn C (November-1984) Optomotor control of the force of flight in Drosophila and Musca. I. Homology of wingbeat-inhibiting movement detectors Biological Cybernetics 51(2) 129-134.
CiteID: 551
Wehrhahn C (September-1984) Ocellar vision and orientation in flies Proceedings of the Royal Society London B 222(1228) 409-411.
CiteID: 1412

Beiträge zu Tagungsbänden (4):

Bülthoff HH und Wehrhahn C (1984) Computation of Motion and Position in the Visual System of the Fly (Musca): Experiments with Uniform Stimulation In: Localization and Orientation in Biology and Engineering, , 8th Cybernetic Congress 1983: Conference on Localization and Orientation in Biology and Engineering 1983, Springer, Berlin, Germany, 149-152, Series: Proceedings in Life Sciences.
pdfCiteID: 842
Reichardt W (1984) Relative movement and figure-ground discrimination by the visual system of the fly (towards a neuronal circuitry) In: Comparative physiology of sensory systems, , 6th International Conference on Comparative Physiology 1982, Cambridge University Press, Cambridge, UK, 357-370.
CiteID: 1671
Reichardt W (1984) Visual control of flight in the fly In: Photoreceptors, , NATO Advanced Study Institute on Photoreceptors 1981, Plenum Press, New York, NY, USA, 351-365.
CiteID: 1669
Wehrhahn C (1984) Visual orientation of flies in flight In: Localization and Orientation in Biology and Engeneering, , 8th Cybernetic Congress 1983: Conference on Localization and Orientation in Biology and Engineering 1983, Springer, Berlin, Germany, 112-118, Series: Proceedings in Life Sciences.
CiteID: 1413

Verschiedenes (1):

Reichardt W: Figur-Grund-Unterscheidung durch das visuelle System, Jahrbuch der Max-Planck-Gesellschaft 1984, 93-110.
CiteID: 1668

1983

Bücher (1):

Reichardt W: Prinzipien der Informationsverarbeitung im visuellen Sinnesbereich, 11, RIAS, Berlin, Germany, (1983). , Series: Vorträge der RIAS-Funk-Universität ; 97
CiteID: 1673

Artikel (2):

Hausen K und Wehrhahn C (September-1983) Microsurgical lesion of horizontal cells changes optomotor yaw responses in the blowfly Calliphora erythrocephala Proceedings of the Royal Society London B 219(1215) 211-216.
CiteID: 1414
Reichardt W, Poggio T und Hausen K (Januar-1983) Figure-ground discrimination by relative movement in the visual system of the fly: Part II: Towards the neural circuitry Biological Cybernetics 46(1 Supplement) 1-30.
pdfCiteID: 1675

Beiträge zu Tagungsbänden (1):

Reichardt W (Oktober-1983) Figure-ground discrimination by relative movement, 6. Congresso di Società Italiana di Biofisica Pura ed Applicata (SIBPA), 7. Congresso di Gruppo Nazionale di Cibernetica e Biofisica (GNCB), S.E.A.G., Pavia, Italy, ATTI VI Congressi SIBPA-VII Congresso GNCB Camogli, 6-8 Ottobre 1983, 138-138.
CiteID: 1670

Beiträge zu Büchern (3):

Reichardt W: Laudatio auf Sir Bernard Katz, 76-78. In: Reden und Gedenkworte: Orden Pour le Mérite für Wissenschaften und Künste 1983, (Ed) H. Maier-Leibnitz, Sekretariat Orden Pour le Mérite für Wissenschaften und Künste, Bonn, Germany, (1983).
CiteID: 1672
Reichardt W: Systems analytical behavioral research: As illustrated with the fly, 811-820. In: Biophysics, (Ed) W. Hoppe, Springer, Berlin, Germany, (1983).
CiteID: 1674
Reichardt W: Von der Festkörperphysik zur Neurobiologie, 399-406. In: Forschung in der Bundesrepublik Deutschland: Beispiele, Kritik, Vorschläge, (Ed) C. Schneider, Verlag Chemie, Weinheim, Germany, (1983).
CiteID: 1676

1982

Artikel (1):

Wehrhahn C, Poggio T und Bülthoff HH (September-1982) Tracking and chasing in houseflies (Musca): An analysis of 3-D flight trajectories Biological Cybernetics 45(2) 123-130.
pdfCiteID: 856

Beiträge zu Büchern (1):

Reichardt W: Systemanalytische Verhaltensforschung am Beispiel der Fliege, 840-850. In: Biophysik, (Ed) W. Hoppe, Springer, Berlin, Germany, (1982).
CiteID: 1677

1981

Tagungsbände (1):

Reichardt W und Poggio T: Theoretical approaches in neurobiology, Work Session of the Neurosciences Research Program 1978, 252, MIT Press, Cambridge, MA, USA, (1981).
0-262-18100-2
CiteID: ReichardtP1981

Artikel (4):

Poggio T, Reichardt W und Hausen K (September-1981) A neuronal circuitry for relative movement discrimination by the visual system of the fly Naturwissenschaften 68(9) 443-446.
CiteID: 1678
Wehrhahn C, Hausen K und Zanker J (August-1981) Is the landing response of the housefly (Musca) driven by motion of a flow field? Biological Cybernetics 41(2) 91-99.
CiteID: 1415
Wehrhahn C (Mai-1981) Fast and slow flight torque responses in flies and their possible role in visual orientation behaviour Biological Cybernetics 40(3) 213-221.
CiteID: 1416
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Last updated: Mittwoch, 07.03.2012