Schildberger, K.; Wohlers, D. W.; Schmitz, B.; Kleindienst, H. U.; Huber, F.: Morphological and physiological changes in central auditory neurons following unilateral foreleg amputation in larval crickets. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 158 (3), S. 291 - 300 (1986)
Wohlers, D. W.; Huber, F.: Topographical organization of the auditory pathway within the prothoracic ganglion of the cricket Gryllus campestris L. Cell and Tissue Research 239 (3), S. 555 - 565 (1985)
Wohlers, D. W.; Huber, F.: Processing of sound signals by six types of neurons in the prothoracic ganglion of the cricket, Gryllus campestris L. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 146 (2), S. 161 - 173 (1982)
Esch, H.; Huber, F.; Wohlers, D. W.: Primary auditory neurons in crickets: Physiology and central projections. Journal of Comparative Physiology A-Neuroethology Sensory Neural and Behavioral Physiology 137 (1), S. 27 - 38 (1980)
Huber, F.; Wohlers, D. W.; Moore, T. E.: Auditory nerve and interneurone responses to natural sounds in several species of cicadas. Physiological Entomology 5 (1), S. 25 - 45 (1980)
Wohlers, D. W.; Williams, J. L. D.; Huber, F.; Moore, T. E.: Central projections of fibers in the auditory and tensor nerves of cicadas (Homoptera: Cicadidae). Cell and Tissue Research 203 (1), S. 35 - 51 (1979)
Schildberger, K.; Huber, F.; Wohlers, D. W.: Central auditory pathway: Neuronal correlates and phonotactic behavior. In: Cricket behavior and neurobiology, S. 423 - 458 (Hg. Huber, F.; Moore, T. E.; Loher, W.). Cornell University Press, Ithaca (N. Y.), London (1989)
Bei Zebrafinken fällt kein Meistersänger vom Himmel. Jeder Jungvogel muss zunächst eine Gesangsschule durchlaufen. Singvögel sind deshalb gute Modellorganismen dafür, wie Lernvorgänge im Tierreich ablaufen