20
Views
22
CrossRef citations to date
0
Altmetric
Original Article

Ocular Counterrolling in Response to Asymmetric Radial Acceleration

, &
Pages 652-665 | Received 25 Aug 1995, Accepted 06 Dec 1995, Published online: 08 Jul 2009

References

  • Anniko M. Embryonic development of vestibular sense organs and their Innervation. Development of auditory and vestibular systems., R Romand. Academic Press, New York 1983; 375–423
  • Ornitz EM. Normal and pathological maturation of vestibular function in the human child. Development of auditory and vestibular systems., R Romand. Academic Press, New York 1983; 479–535
  • Deschesne C, Sans A. Development of vestibular receptor surfaces in human fetuses. Am J Otolaryngol 1985; 6: 378–87
  • Eviatar L, Eviatar A. The normal nystagmus response of infants to caloric and perrotatory stimulation. Laryngoscope 1979; 89: 1036–45
  • Cyr D G, Broockhouser P E, Valente M. Vestibular evaluation of infants and preschool children. Otolaryngol Head Neck Surg 1985; 93: 463–8
  • Broockhouser P E, Cyr D G, Peters J E, Schulte LE. Correlates of vestibular evaluation results during the first year of life. Laryngoscope 1991; 101: 687–94
  • Guedry FE. Orientation of the rotation axis relative to gravity: its influence on nystagmus and the sense of rotation. Acta Otolaryngol (Stockh) 1965; 60: 30–48
  • Benson A J, Bodib MA. Interaction of linear and angular accelerations on vestibular receptors in man. Aerosp Med 1966; 37: 144–54
  • Darlot C, Denise P, Droulez J, Cohen B, Berthoz A. Eye movements induced by off vertical axis rotation (OVAR) at small angles of tilt. Exp Brain Res 1988; 73: 91–105
  • Furman J MR, Baloh RW. Otolith-ocular testing in human subjects. Ann NY Acad Sci 1992; 656: 431–51
  • Denise P, Darlot C, Ignatiew-Charles P, Toupet M. Unilateral peripheral semicircular lesion and off vertical axis rotation. Acta Otolaryngol (Stockh) 1996; 116, in press
  • Kaga K, Maeda H, Suzuki J. Development of righting reflexes, gross motor functions and balance in infants with labyrinth hypoactivity with or without mental retardation. Adv Otorhinolaryngol 1988; 41: 152–61
  • Tsuzuku T, Kaga K. Delayed motor function and results of vestibular function tests in children with inner ear anomalies. Int J Pediatr Otorhinolaryngol 1992; 213: 261–8
  • Wiener-Vacher S R, Bril B, Ledebt A. Changes in otolithic function in infants learning to walk demonstrated with off vertical axis rotation (OVAR). Soc Neurosci Abstr 1994; 20: 1108
  • Ledebt A, Wiener-Vacher S R, Bril B. Relation between vestibular and gait development. Posture and gait: “Vestibular and neural front”., K Taguchi, M Igarashi, S Mori. Elsevier, Amsterdam 1994; 155–8
  • Cohen B, Suzuki J, Raphan T. Role of the otolith organs in generation of horizontal nystagmus; effects of selective labyrinthine lesions. Brain Res 1983; 276: 159–64
  • Darlot C, Denise P, Droulez J. Modulation by horizontal eye position of the vestibulo-collic reflex induced by tilting in the frontal plane in the alert cat. Exp Brain Res 1985; 41: 420–6
  • Hain TC. A model of the nystagmus induced by off vertical axis rotation. Biol Cybern 1986; 54: 337–50
  • Paige G, Tomko DL. Eye movement responses to linear head motion in the squirrel monkey. II. Visual-vestibular interactions and kinematic considerations. J Physiol 1991; 65: 1183–96
  • Angelaki DE. Two dimensional coding of linear acceleration and the angular velocity sensitivity of the otolith system. Biol Cybern 1992; 67: 511–21
  • Hess B JM, Angelaki DE. Angular velocity detection by head movements orthogonal to the plane of rotation. Exp Brain Res 1993; 95: 77–83
  • Hess B JM, Angelaki DE. Otolith contribution to gaze stabilization. Multisensory control of movement., A Berthoz. Oxford University Press, Oxford 1993; 51–72
  • Jouen F. Early visual-vestibular interactions and postural development. Sensory-motor organization and development in infancy and early childhood., H Bloch, BI Bertenthal. Kluwer Academic Publishers, Amsterdam 1990; 199–215
  • Ledebt A, Bril B, Wiener-Vacher SR. Trunk and head stabilization during the first months of independent walking. Neuroreport 1995; 13: 1737–40
  • Assaiante A, Amblard B. Ontogenesis of head stabilization in space during locomotion in children: influence of visual cues. Exp Brain Res 1993; 93: 499–515
  • Pfalz CR. Untersuchungen iiber die diagnostische Be-deutung der galvalnischen Priifung bei Akustikusneuri-nomen. Arch ORL 1973; 205: 130–2
  • Mergner T, Schrenk R, Müller C, Human DC. Scalp potentials during vestibular and optokinetic stimulation: non-specific responses?. EEG Clin Neurophysiol 1989; 73: 322–33
  • Probst T, Katterbach T, Wist ER. Vestibularly evoked potentials (VESTEPs) of the horizontal semicircular canals under different body positions in space. J Vest Res 1995; 5(4)253–63
  • Elidan J, Langhofer L, Honrubia V. Recording of short-latency vestibular evoked potentials induced by acceleration impulses in experimental animals. EEG Clin Neurophysiol 1987; 68: 58–69
  • Wetzig J, Reiser M, Martin E, Bregenzer N, Baum-Garten RJ. Unilateral centrifugation of the otoliths as a new method to determine bilateral asymmetries of the otolith apparatus in man. Acta Astronautica 1990; 21: 519–25
  • Clarke A H, Waltmann K, Scherer H. Thee-dimen-sional aspects of caloric nystagmus in humans: II. Caloric-induced torsional deviation. Acta Otolaryngol (Stockh) 1993; 113: 693–8
  • Benson A J, Spencer B A, Scott JRR. Thresholds for the detection of the direction of whole body, linear movement in the horizontal plane. Aviat Space Environ Med 1986; 11: 1088–96
  • Clarke A H, Teiwes W, Scherer H. Videooculography -an alternative method for measurement of three-dimensional eye movements. Oculomotor control and cognitive processes., R Schmidt, D Zambarbi-Eri. Elsevier, Amsterdam 1991; 431–43
  • Blanks R HI, Curthoys I S, Markham CH. Planar relationships of the semicircular canals in man. Acta Otolaryngol (Stockh) 1975; 80: 185–96
  • Ezure K, Graf W. A quantitative analysis of the spatial organization of the vestibulo-ocular reflexes in lateral- and front-eyed animals. I. Orientation of semicircular canals and extraocular muscles. Neuroscience 1984; 12: 85–93
  • Smith S T, Curthoys I S, Moore ST. The human ocular torsion position response during yaw angular acceleration. Vision Res 1995; 35(No. 14)2045–55
  • Collewijn H, van der Steen J, Ferman L, Jansen TC. Human ocular counterroll: assessment of static and dynamic properties from scleral coil recordings. Exp Brain Res 1985; 59: 185–96
  • Fluur E, Mellström A. Utricular stimulation and oculomotor reactions. Laryngoscope 1970; 80: 1701–12
  • Shimazu H, Smith CM. Cerebellar and labyrinthine influences on single vestibular neurons identified by natural stimuli. J Neurophysiol 1971; 34: 493–508

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.