The suboesophageal ganglion: a ‘missing link’ in the auditory pathway of the locust

Zeitschrift für vergleichende Physiologie - Tập 156 - Trang 413-428 - 1985
G. S. Boyan1, J. S. Altman1
1Ruhr-Universität Bochum, Lehrstuhl für Allgemeine Zoologie, Bochum 1, Federal Republic of Germany

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Abrams TW, Pearson KG (1982) Effects of temperature on identified central neurons that control jumping in the grasshopper. J Neurosci 2:1538–1553 Altman JS, Kien J (1979) Suboesophageal neurons involved in head movements and feeding in locusts. Proc R Soc Lond B 205:209–227 Altman JS, Kien J (1984) The anatomical basis for intersegmental and bilateral coordination in insects. In: Bush B, Clarac F (eds) Coordination of motor behaviour. Soc Exp Biol Seminar Ser 24. Cambridge University Press, Cambridge London (in press) Altman JS, Shaw MK, Tyrer NM (1980) Input synapses on to a locust sensory neurone revealed by cobalt-electron microscopy. Brain Res 189:245–250 Bentley DR (1969) Intracellular activity in cricket neurones during the generation of behaviour patterns. J Insect Physiol 15:677–699 Boyan GS (1983) Postembryonic development in the auditory system of the locust. Anatomical and physiological characterisation of interneurones ascending to the brain. J Comp Physiol 151:499–513 Boyan GS (1984) Neural mechanisms of auditory information processing by identified interneurones in Orthoptera. J Insect Physiol 30:27–41 Boyan GS (1985) Response decrement in an auditory neurone of the locust. J Insect Physiol (in press) Brady J (1967) Histological observations on circadian changes in the neurosecretory cells of cockroach sub-oesophageal ganglia. J Insect Physiol 13:201–213 Camhi JM, Hinkle M (1972) Attentiveness to sensory stimuli: central control in locusts. Science 175:550–553 Delcomyn F, Daley DL (1979) Central excitation of cockroach giant interneurones during walking. J Comp Physiol 130:39–48 Eichendorf A, Kalmring K (1980) Projections of auditory ventral-cord neurons in the supraoesophageal ganglion ofLocusta migratoria. Zoomorphologie 94:133–149 Honegger HW, Altman JS, Kien J, Muller-Tautz R, Pollerberg E (1984) A comparative study of neck motor neurones in a cricket and a locust. J Comp Neurol 230:517–535 Horn G (1967) Neuronal mechanisms of habituation. Nature 215:707–711 Kalmring K (1971) Akustische Neuronen im Unterschlundganglion der WanderheuschreckeLocusta migratoria. Z Vergl Physiol 72:95–110 Kalmring K (1975) The afferent auditory pathway in the ventral cord ofLocusta migratoria (Acrididae). I. Synaptic connectivity and information processing among the auditory neurons of the ventral cord. J Comp Physiol 104:103–141 Kalmring K, Rheinlaender J, Rehbein H (1972a) Akustische Neuronen im Bauchmark der WanderheuschreckeLocusta migratoria. Z Vergl Physiol 76:314–332 Kalmring K, Rheinlaender J, Römer H (1972b) Akustische Neuronen im Bauchmark vonLocusta migratoria. Der Einfluß der Schallrichtung auf die Antwortmuster. J Comp Physiol 80:325–352 Kalmring K, Kühne R, Moysich F (1978a) The auditory pathway in the ventral cord of the migratory locust (Locusta migratoria): response transmission in the axons. J Comp Physiol 126:25–33 Kalmring K, Kühne R, Moysich F (1978b) The coding of sound signals in the ventral-cord auditory system of the migratory locust,Locusta migratoria. J Comp Physiol 128:213–226 Kien J (1983) The initiation and maintenance of walking in the locust: an alternative to the command concept. Proc R Soc Lond B 219:137–174 Kien J, Altman JS (1984) Descending interneurons from the brain and suboesophageal ganglia and their role in the control of locust behaviour. J Insect Physiol 30:59–72 Kien J, Williams M (1983) Morphology of neurons in locust brain and suboesophageal ganglion involved in initiation and maintenance of walking. Proc R Soc Lond B 219:175–192 O'Shea M (1975) Two sites of axonal spike initiation in a bimodal interneuron. Brain Res 96:93–98 O'Shea M, Rowell CHF, Williams JLD (1974) The anatomy of a locust visual interneurone; the descending contralateral movement detector. J Exp Biol 60:1–12 Otto D, Campan R (1978) Descending interneurons from the cricket suboesophageal ganglion. Impulse patterns correlated with ventilation. Naturwissenschaften 65:491–492 Otto D, Weber T (1982) Interneurons descending from the cricket cephalic ganglia that discharge in the pattern of two motor rhythms. J Comp Physiol 148:209–219 Pearson KG, Goodman CS (1979) Correlation of variability in structure with variability in synaptic connections of an identified interneuron in locusts. J Comp Neurol 184:141–166 Pearson KG, Robertson RM (1981) Interneurons coactivating hindleg flexor and extensor motoneurons in the locust. J Comp Physiol 144:391–400 Pearson KG, Heitler WJ, Steeves JD (1980) Triggering of locust jump by multimodal inhibitory interneurons. J Neurophysiol 43:257–278 Peters BH, Altman JS, Tyrer NM (1985) Synaptic connections between the hindwing stretch receptor and flight motor neurones in a locust revealed by double cobalt labelling for electron microscopy. J Comp Neurol (in press) Rehbein HG (1973) Experimentell-anatomische Untersuchungen über den Verlauf der Tympanalnervenfasern im Bauchmark von Feldheuschrecken, Laubheuschrecken und Grillen. Verh Dtsch Zool Ges 66:184–189 Rehbein H (1976) Auditory neurons in the ventral nerve cord of the locust: morphological and functional properties. J Comp Physiol 110:233–250 Rehbein H, Kalmring K, Römer H (1974) Structure and function of acoustic neurons in the thoracic ventral nerve cord ofLocusta migratoria (Acrididae). J Comp Physiol 95:263–280 Römer H, Marquart V (1984) Morphology and physiology of auditory interneurons in the metathoracic ganglion of the locust. J Comp Physiol A 155:249–262 Rowell CHF (1964) Central control of an insect segmental reflex. I. Inhibition by different parts of the central nervous system. J Exp Biol 41:559–572 Rowell CHF, Horn G (1968) Dishabituation and arousal in the response of single nerve cells in an insect brain. J Exp Biol 49:171–183 Simmons P (1980) A locust wind and ocellar brain neurone. J Exp Biol 85:281–294 Steeves JD, Pearson KG (1982) Proprioreceptive gating of inhibitory pathways to hindleg flexor motorneurones in the locust. J Comp Physiol 146:507–515 Stewart WW (1978) Functional connections between cells as revealed by dye-coupling with a highly fluorescent naphthalimide tracer. Cell 14:741–759 Tyrer NM, Gregory GE (1982) A guide to the neuroanatomy of locust suboesophageal and thoracic ganglia. Phil Trans R Soc Lond B 297:91–123 Wiersma CAG (1967) Visual central processing in crustaceans. In: Wiersma CAG (ed) Invertebrate nervous systems. University Chicago Press, Chicago, pp 269–284