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Original Article

Body Position and Caloric Nystagmus Response

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Pages 339-347 | Published online: 08 Jul 2009

References

  • Bárány R. Physiologie und Pathologie des Bogengangsapparates beim Menschen. Deu-ticke, Vienna 1907
  • Veits C. Zur Technik der kalorischen Schwachreizuntersuchung. Z Hals Nasen Ohrenheilkd 1928; 19: 542–68
  • Blanks R H, Curthoys I, Markham C H. Planar relationships of the semicircular canals in man. Acta Otolaryngol (Stockh) 1975; 80: 185–96
  • Behrman W. Indifferenzlagen und Nystagmusgebiete. Acta Otolaryngol (Stockh) 1940; 5–61, Suppl 11
  • Coats A C, Smith S Y. Body position and the intensity of caloric nystagmus. Acta Otolaryngol (Stockh) 1967; 63: 515–32
  • Scherer H, Brandt U, Clarke A H, Merbold U, Parker R. European vestibular experiments on the Spacelab-1 mission: 3. Caloric nystagmus in microgravity. Exp Brain Res 1986; 64: 255–63
  • Scherer H, Clarke A H. Consideration on the caloric nystagmus in microgravity. The Vestibular System: Neurophysiologic and Clinical Research, M D Graham, J L. Kemink. Raven Press, New York 1987; 79–89
  • Kellogg R S, Graybiel A. Lack of response to thermal stimulation of the semicircular canals in the weightless phase of parabolic flight. Aerospace Med 1967; 38: 487–90
  • Jongkees L BW. Physiologie und Pathophysiologie des Vestibularorganes. Arch Klin Exp Ohr- Nas-Kehlk Heilkd 1969; 194: 1–110
  • Heermann H. Zwei Reaktionen bei kalorischer Reizung des Labyrinths. Laryngol Rhinol Otol 1985; 64: 145
  • Müller-Deile J, Reker U, Zell E. Über die Bedeutung der Konvektions-Hypothese Báránys für den thermischen Nystagmus. Laryngol Rhinol Otol 1985; 65: 154–7
  • Siebert U, Scholtz H J. Untersuchungen zur thermischen Bogengangsreizung. Präzisierung der Bárányschen Theorie. HNO-praxis (Leipzig) 1985; 10: 297–301
  • Wortmann A, Berg M, Haid T. A new computer analysis of the caloric test. Acta Otolaryngol (Stockh) 1984; 174–7, Suppl 406
  • Barnes G, Benson A J. Adaptation in the caloric response. Vestibular Mechanisms in Health and Disease, J. D. Hood. Academic Press, New York 1978; 254–62
  • Proctor L R. The effect of variations in temporal bone structure upon the caloric response. Acta Otolaryngol (Stockh) 1982; 94: 253–9
  • Curthoys I S, Markham C H. Convergence of labyrinthine influences on units in the vestibular nuclei of the cat. Brain Res 1971; 35: 469–90
  • Fernandez C, Goldberg J M. Physiology of peripheral neurons innervating otolith organs of the squirrel monkey I. Response to static tilts and to long-during centrifugal force. J Neurophysiol 1976; 39: 970–84
  • Buizza A, Leger A, Droulez J, Berthoz A, Schmid R. Influence of otolithic stimulation by horizon tal linear acceleration on optokinetic nystagmus and visual motion perception. Exp Brain Res 1980; 39: 165–76
  • Harris L R. The effect of opposing canal and otolith signals during off-vertical-axis rotation in the cat. J Physiol 1986; 371: 30
  • Berthoz A, Melvill Jones G. Adaptive Mechanisms in Gaze Control. Elsevier, Amsterdam 1985

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