Publications

If you are interested in some of these publications, please request here >>>> i18m@zfn.uni-bremen.de

    1. Roth, G. and W. Wiggers (1983) Responses of the toad Bufo bufo to stationary prey stimuli.
      Z. Tierpsychol. 61:225-234

    2. Wiggers, W. (1991) Elektrophysiologische, neuroanatomische und verhaltensphysiologische Untersuchungen zur visuellen Verhaltenssteuerung bei lungenlosen Salamandern.
      Thesis, University of Bremen.

    3. Wiggers, W. and G. Roth (1991) Anatomy, neurophysiology and functional aspects of the nucleus isthmi in salamanders of the family Plethodontidae.
      J Comp Physiol A 169:165-176


    4. Straub, A., G. Roth, H. Schwegler and W. Wiggers (1993) Control of prey-catching behavior of salamanders by a "continous neural network".
      In: Elsner, N. and M. Heisenberg (Eds.) Gene-Brain-Behaviour. Stuttgart, New York: Thieme.

    5. Eurich, C., G. Roth, H. Schwegler and W. Wiggers (1993) Simulander: A neural network model for the orientation movement of salamanders.
      In: Elsner, N. and M. Heisenberg (Eds.) Gene-Brain-Behaviour. Stuttgart, New York: Thieme.

    6. Eurich, C., G. Roth, H. Schwegler and W. Wiggers (1994): Simulander II: achieving depth perception by construction of large three-dimensional receptive fields.
      In: Elsner, N. and Breer, H. (Eds.) Sensory transduction. Stuttgart, New York: Thieme.

    7. Wiggers, W. and G. Roth (1994) Depth perception in salamanders: The wiring of visual maps.
      Europ. J. of Morphol. 32:311-314

    8. Eurich, C.; G. Roth; H. Schwegler and W. Wiggers (1995) Simulander. A neural network model for the orientation movement of salamanders.
      J Comp Physiol A 176: 379-389

    9. Wiggers, W.; G. Roth; C. Eurich and A. Straub (1995) Binocular depth perception mechanisms in tongue-projecting salamanders.
      J Comp Physiol A 176: 365-377


    10. Wiggers, W., C. Eurich, G. Roth and H. Schwegler (1995) Salamander und Simulander: Experimente und Modellierung zur Raumorientierung bei Schleuderzungensalamandern.
      Neuroforum 1: 6-16


    11. Luksch, H., H. Kahl, W. Wiggers and G. Roth (1995) The pretectum of salamanders : An intracellular study on the morphology and physiology of pretectal neurons and their influence on tectal evoked potentials.
      In: Burrows, M., T. Matheson, T.L. Newland And H. Schuppe (Eds.) Proc. of the 4th Intern. Con. Neuroethol. 1995. Thieme, Stuttgart, New York


    12. Kahl, H., H. Luksch, W. Wiggers and G. Roth (1996) The pretectum of urodele amphibians: An intracellular study on anatomy, connectivity and physiology of pretectal neurons in-vitro.
      In: Elsner, N. and H.-U. Schnitzler (Eds.) Brain and Evolution. Thieme, Stuttgart, New York


    13. Wegener, D. and W. Wiggers (1997) Projection specifity of retinal ganglion cells in salamanders of the family Plethodontidae.
      In: Elsner, N. and H. Waessle (Eds.) From Membrane to Mind. Thieme, Stuttgart, New York


    14. Wiggers, W. (1997) Topology and fine structure of visual projections in the tectum of plethodontid salamanders
      In: Elsner, N. and H. Waessle (Eds.) From Membrane to Mind. Thieme, Stuttgart, New York


    15. Kahl, H. and W. Wiggers (1997) Physiological responses of intracellularly recorded tectal neurons in four different in-vitro approaches in the salamander Plethodon jordani.
      In: Elsner, N. and H. Waessle (Eds.) From Membrane to Mind. Thieme, Stuttgart, New York

    16. Eurich, C. und W. Wiggers (1997) Salamander - Simulander. Künstliche neuronale Netze dienen dem Verständnis von komplexen Vorgängen im Gehirn.
      Unterricht Biologie Sonderheft 1997

    17. Roth, G., U. Dicke and W. Wiggers (1997) Vision.
      In: Heatwole (Ed.) Amphibian Biology. Volume 3. Sensory Perception. Surrey Beatty & Sons

    18. Wiggers, W. (1998) Isthmo-tectal connections in plethodontid salamanders.
      J. Comp. Neurol., 395: 261-272


    19. Wiggers, W. (1999) Projections of single retinal ganglion cells to the visual centers. An intracellular staining study in a plethodontid salamander.
      Visual Neuroscience 16: 435-447