EDP Sciences Journals List
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Issue Apidologie
Volume 33, Number 1, January-February 2002
Page(s) 33 - 40
DOI 10.1051/apido:2001003

References

  • Adamek G.P., Gesteland R.C., Mair R.G., Oakley B. (1984) Transduction physiology of olfactory receptor cilia, Brain Res. 310, 87-97.
  • Allan S.A., Slessor K.N., Winston M.L., King G.G.S. (1987) The influence of age and task specialization on the production and perception of honey bee pheromones, J. Insect Physiol. 33, 917-922.
  • Balakrishnan R., Pollack G.S. (1997) The role of antennal sensory cues in female responses to courting males in the cricket Teleogryllus oceanicus, J. Exp. Biol. 200, 511-522.
  • Bitterman M.E., Menzel R., Fietz A., Schäfer S. (1983) Classical conditioning of proboscis extension in honeybees (Apis mellifera), J. Comp. Physiol. 97, 107-119.
  • Breed M.D. (1998) Chemical Cues in Kin Recognition: Criteria for Identification, Experimental Approaches, and the Honey Bee as an Example, in: Vander Meer R.K., Breed M.D., Espelie K.E., Winston M.L. (Eds.), Pheromone Communication in Social Insects, Westview Press, Colorado, pp. 57-78.
  • Breed M.D., Stiller T.M. (1992) Honey bee, Apis mellifera, nestmate discrimination: hydrocarbon effects and the evolutionary implications of comb choice, Anim. Behav. 43, 875-883.
  • Burd G.D. (1993) Morphological study of the effects of intranasal zinc sulfate irrigation on the mouse olfactory epithelium and olfactory bulb, Microsc. Res. Tech. 24, 195-213.
  • Buttel-Reepen H. von (1900) Sind die Bienen Reflexmaschinen? Biol. Zentralbl. 20, 97-109; 130-144; 177-193; 209-224; 289-304.
  • Cancalon P. (1982) Degeneration and regeneration of olfactory cells induced by ZnSO4 and other chemicals, Tissue Cell 14, 717-733.
  • Esslen J., Kaissling K.E. (1976) Zahl und Verteilung antennaler Sensillen bei der Honigbiene (Apis mellifera L.), Zoomorphology 83, 227-251.
  • Free J.B. (1987) Pheromones of social bees, Chapman & Hall, New York.
  • Frisch K. von (1921) Über den Sitz des Geruchsinnes bei Insekten, Zool. Jb. Abt. Zool. Physiol. Tiere 38, 449-516.
  • Frisch K. von (1965) Tanzsprache und Orientierung der Bienen, Springer-Verlag, Berlin.
  • Fröhlich B., Riederer M., Tautz J. (2000) Comb-wax discrimination by honeybees tested with the proboscis extension reflex, J. Exp. Biol. 203, 1581-1587.
  • Herzog C., Otto T. (1999) Regeneration of olfactory receptor neurons following chemical lesion: time course and enhancement with growth factor administration, Brain Res. 849, 155-161.
  • Hunnicut L.G. (1939) The effect of zinc sulphate on the olfactory mucus membrane in dogs and monkeys, Tr. Pacific Coast Oto-Opthalmol. Soc. 24, 72-80.
  • Keil T.A. (1992) Fine Structure of a Developing Insect Olfactory Organ: Morphogenesis of the Silkmoth Antenna, Micro. Res. Tech. 22, 351-371.
  • Lacher V. (1964) Elektrophysiologische Unter- suchungen an einzelnen Rezeptoren für Geruch, Kohlendioxid, Luftfeuchtigkeit und Temperatur auf den Antennen der Arbeitsbiene und der Drohne (Apis mellifera L.), Z. Vergl. Physiol. 48, 587-623.
  • Lacher V., Schneider D. (1963) Elektrophysiologischer Nachweis der Riechfunktion von Porenplatten (Sensilla placodea) auf den Antennen der Drohne und der Arbeitsbiene (Apis mellifera L.), Z. Vergl. Physiol. 47, 274-278.
  • Martin H., Lindauer M. (1966) Sinnesphysiologische Leistungen beim Wabenbau der Honigbiene, Z. Vergl. Physiol. 53, 372-404.
  • Matulionis D.H. (1975) Ultrastructural study of mouse epithelium following destruction by ZnSO4 and its subsequent regeneration, Am. J. Anat. 142, 79-100.
  • Minnich D.E. (1932) The contact chemoreceptors of the honey bee Apis mellifera LINN, J. Exp. Zool. 61, 375-393.
  • Ozaki M., Tominaga Y. (1999) Contact Chemoreceptors, in: Eguchi E., Tominaga Y. (Eds.), Atlas of Arthropod Sensory Receptors, Springer Verlag, Berlin, pp. 143-154.
  • Page R.E.J., Erber J., Fondrk M.K. (1998) The effect of genotype on response thresholds to sucrose and foraging behavior of honey bees (Apis mellifera L.), J. Comp. Physiol. 182, 489-500.
  • Robinson G.E. (1987) Modulation of alarm pheromone perception in the honey bee: evidence for division of labor based on hormonally regulated response thresholds, J. Comp. Physiol. 160, 613-619.
  • Roelofs W.L. (1984) Electroantennogram assays: rapid and convenient screening procedures for pheromones, in: Hummel H.E. (Ed.), Techniques in Pheromone Research, in Miller, T.A. series Experimental Entomology, Springer Verlag, Berlin, pp. 131-159.
  • Seeley T.D. (1998) Thoughts on information and integration in honey bee colonies, Apidologie 29, 67-80.
  • Takeda K. (1961) Classical conditioned response in the honey bee, J. Insect Physiol. 6, 168-179.
  • Vareschi E. (1971) Duftunterscheidung bei der Honigbiene-Einzelzellableitungen und Verhaltens- reaktionen, Z. Vergl. Physiol. 75, 143-173.
  • Vetter R.S., Visscher K. (1997) Influence of age on antennal response of male honeybees, Apis mellifera, to queen mandibular pheromone and alarm pheromone component, J. Chem. Ecol. 23, 1867-1880.

Abstract

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