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Published in: The Cerebellum 5/2021

01-10-2021 | Nystagmus | Case Report

Pendular Oscillation and Ocular Bobbing After Pontine Hemorrhage

Authors: Tzu-Pu Chang, Daniel R. Gold, Jorge Otero-Millan, Bor-Ren Huang, David S. Zee

Published in: The Cerebellum | Issue 5/2021

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Abstract

The pathophysiology of acute, vertical spontaneous eye movements following pontine hemorrhage is not well understood. Here, we present and discuss the video-oculography findings of a patient with acute pontine hemorrhage who developed vertical pendular oscillation and ocular bobbing while comatose. The amplitudes, peak velocities, frequency distribution, and phase planes (velocity versus position) of the eye movements were analyzed. The vertical pendular oscillation was rhythmic with a peak frequency of 1.7 Hz, but amplitudes (mean 1.9°, range 0.2–8.2°) and peak velocities (mean 20.6°/s; range 5.9–60.6°/sec) fluctuated. Overall, their peak velocities were asymmetric, faster with downward than upward. Higher peak velocities were seen with larger amplitudes (downward phase r = 0.95, p < 0.001; upward phase r = 0.91, p < 0.001) and with movements beginning at eye positions lower in the orbit (downward phase r = − 0.64, p < 0.001; upward phase r = − 0.86, p < 0.001). Interspersed were typical ocular bobbing waveforms with a fast (peak velocity 128.8°/s), large-amplitude (17.5°) downward movement, sometimes followed by a flat interphase interval (0.5 s) when the eye was nearly stationary, and then a slow return to mid-position with a decaying velocity waveform. To account for the presence and co-existence of pendular oscillations and bobbing, we present and discuss three hypothetical models, not necessarily mutually exclusive: (1) oscillations originating in the inferior olives due to disruption of the central tegmental tract(s); (2) unstable neural integrator function due to pontine cell group damage involving neurons involved in gaze-holding; (3) low-frequency saccadic intrusions following omnipause neuron damage.
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Literature
2.
go back to reference Mehler MF. The clinical spectrum of ocular bobbing and ocular dipping. J Neurol Neurosurg Psychiatry. 1988;51:725–7.CrossRef Mehler MF. The clinical spectrum of ocular bobbing and ocular dipping. J Neurol Neurosurg Psychiatry. 1988;51:725–7.CrossRef
3.
go back to reference Susac JO, Hoyt WF, Daroff RB, Lawrence W. Clinical spectrum of ocular bobbing. J Neurol Neurosurg Psychiatry. 1970;33:771–5.CrossRef Susac JO, Hoyt WF, Daroff RB, Lawrence W. Clinical spectrum of ocular bobbing. J Neurol Neurosurg Psychiatry. 1970;33:771–5.CrossRef
4.
go back to reference Goldschmidt TJ, Wall M. Slow-upward ocular bobbing. J Clin Neuroophthalmol. 1987;7:241–3.PubMed Goldschmidt TJ, Wall M. Slow-upward ocular bobbing. J Clin Neuroophthalmol. 1987;7:241–3.PubMed
5.
go back to reference Lawrence WH, Lightfoote WE. Continuous vertical pendular eye movements after brain-stem hemorrhage. Neurology. 1975;25:896–8.CrossRef Lawrence WH, Lightfoote WE. Continuous vertical pendular eye movements after brain-stem hemorrhage. Neurology. 1975;25:896–8.CrossRef
6.
7.
go back to reference Nelson JR, Johnston CH. Ocular Bobbing. Arch Neurol. 1970;22:348–56. Nelson JR, Johnston CH. Ocular Bobbing. Arch Neurol. 1970;22:348–56.
8.
9.
go back to reference CASSIDY L, TAYLOR D, WERNER K, VEYS P, HARRIS C. Reverse and converse ocular bobbing with synkinetic blinking and opsoclonus in a child with Epstein-Barr virus encephalitis after bone marrow transplant for MPS I. Br J Ophthalmol. 2000;84:1203.CrossRef CASSIDY L, TAYLOR D, WERNER K, VEYS P, HARRIS C. Reverse and converse ocular bobbing with synkinetic blinking and opsoclonus in a child with Epstein-Barr virus encephalitis after bone marrow transplant for MPS I. Br J Ophthalmol. 2000;84:1203.CrossRef
10.
go back to reference Karakas HM, Yakinci C, Firat AK, Kahraman B. Unilateral reverse ocular bobbing caused by tuberous sclerosis. Dev Med Child Neurol. 2006;48:851–4.CrossRef Karakas HM, Yakinci C, Firat AK, Kahraman B. Unilateral reverse ocular bobbing caused by tuberous sclerosis. Dev Med Child Neurol. 2006;48:851–4.CrossRef
11.
go back to reference Shimazaki H, Morita M, Nakano I, Dalmau J. Inverse ocular bobbing in a patient with encephalitis associated with antibodies to the N-methyl-D-aspartate receptor. Arch Neurol. 2008;65:1251–1. Shimazaki H, Morita M, Nakano I, Dalmau J. Inverse ocular bobbing in a patient with encephalitis associated with antibodies to the N-methyl-D-aspartate receptor. Arch Neurol. 2008;65:1251–1.
12.
go back to reference Schneider J, Rossetti AO, Alvarez V. Ocular bobbing/dipping after cardiac arrest may be a post-anoxic myoclonus. Resuscitation. 2018;124:e7.CrossRef Schneider J, Rossetti AO, Alvarez V. Ocular bobbing/dipping after cardiac arrest may be a post-anoxic myoclonus. Resuscitation. 2018;124:e7.CrossRef
13.
go back to reference Munakomi S, Thapa L. Seesaw-Pattern Ocular Bobbing in a Patient With Pontine Bleed. JAMA Neurol. 2019;76:362–3.CrossRef Munakomi S, Thapa L. Seesaw-Pattern Ocular Bobbing in a Patient With Pontine Bleed. JAMA Neurol. 2019;76:362–3.CrossRef
14.
go back to reference Stacy CB. Continuous vertical ocular flutter, asynchronous palatal myoclonus, and alpha coma. Neuro-Ophthalmology. 1982;2:147–56.CrossRef Stacy CB. Continuous vertical ocular flutter, asynchronous palatal myoclonus, and alpha coma. Neuro-Ophthalmology. 1982;2:147–56.CrossRef
15.
go back to reference Ruigrok TJ, de Zeeuw CI, Voogd J. Hypertrophy of inferior olivary neurons: a degenerative, regenerative or plasticity phenomenon. Eur J Morphol. 1990;28:224–39.PubMed Ruigrok TJ, de Zeeuw CI, Voogd J. Hypertrophy of inferior olivary neurons: a degenerative, regenerative or plasticity phenomenon. Eur J Morphol. 1990;28:224–39.PubMed
18.
go back to reference Llinás R, Yarom Y. Oscillatory properties of guinea-pig inferior olivary neurones and their pharmacological modulation: an in vitro study. J Physiol. 1986;376:163–82.CrossRef Llinás R, Yarom Y. Oscillatory properties of guinea-pig inferior olivary neurones and their pharmacological modulation: an in vitro study. J Physiol. 1986;376:163–82.CrossRef
19.
go back to reference Long MA, Deans MR, Paul DL, Connors BW. Rhythmicity without Synchrony in the Electrically Uncoupled Inferior Olive. J Neurosci. 2002;22:10898–905.CrossRef Long MA, Deans MR, Paul DL, Connors BW. Rhythmicity without Synchrony in the Electrically Uncoupled Inferior Olive. J Neurosci. 2002;22:10898–905.CrossRef
21.
go back to reference Das VE, Oruganti P, Kramer PD, Leigh RJ. Experimental tests of a neural-network model for ocular oscillations caused by disease of central myelin. Exp Brain Res. 2000;133:189–97.CrossRef Das VE, Oruganti P, Kramer PD, Leigh RJ. Experimental tests of a neural-network model for ocular oscillations caused by disease of central myelin. Exp Brain Res. 2000;133:189–97.CrossRef
22.
go back to reference Tilikete C, Jasse L, Pelisson D, Vukusic S, Durand-Dubief F, Urquizar C, et al. Acquired pendular nystagmus in multiple sclerosis and oculopalatal tremor. Neurology. 2011;76:1650–7. Tilikete C, Jasse L, Pelisson D, Vukusic S, Durand-Dubief F, Urquizar C, et al. Acquired pendular nystagmus in multiple sclerosis and oculopalatal tremor. Neurology. 2011;76:1650–7.
23.
go back to reference Itoh Y, Sakata E. Acquired pendular oscillation after brain-stem hemorrhage. Acta Otolaryngol Suppl. 1989;468:205–8.CrossRef Itoh Y, Sakata E. Acquired pendular oscillation after brain-stem hemorrhage. Acta Otolaryngol Suppl. 1989;468:205–8.CrossRef
24.
go back to reference Averbuch-Heller L, Kori AA, Rottach KG, Dell’Osso LF, Remler BF, Leigh RJ. Dysfunction of pontine omnipause neurons causes impaired fixation: macrosaccadic oscillations with a unilateral pontine lesion. Neuroophthalmology. 1996;16:99–106.CrossRef Averbuch-Heller L, Kori AA, Rottach KG, Dell’Osso LF, Remler BF, Leigh RJ. Dysfunction of pontine omnipause neurons causes impaired fixation: macrosaccadic oscillations with a unilateral pontine lesion. Neuroophthalmology. 1996;16:99–106.CrossRef
25.
go back to reference Johnston JL, Sharpe JA, Ranalli PJ, Morrow MJ. Oblique misdirection and slowing of vertical saccades after unilateral lesions of the pontine tegmentum. Neurology. 1993;43:2238–44.CrossRef Johnston JL, Sharpe JA, Ranalli PJ, Morrow MJ. Oblique misdirection and slowing of vertical saccades after unilateral lesions of the pontine tegmentum. Neurology. 1993;43:2238–44.CrossRef
26.
go back to reference Kaneko CR. Effect of ibotenic acid lesions of the omnipause neurons on saccadic eye movements in rhesus macaques. J Neurophysiol. 1996;75:2229–42.CrossRef Kaneko CR. Effect of ibotenic acid lesions of the omnipause neurons on saccadic eye movements in rhesus macaques. J Neurophysiol. 1996;75:2229–42.CrossRef
27.
go back to reference De Zeeuw CI, Simpson JI, Hoogenraad CC, Galjart N, Koekkoek SK, Ruigrok TJ. Microcircuitry and function of the inferior olive. Trends Neurosci. 1998;21:391–400.CrossRef De Zeeuw CI, Simpson JI, Hoogenraad CC, Galjart N, Koekkoek SK, Ruigrok TJ. Microcircuitry and function of the inferior olive. Trends Neurosci. 1998;21:391–400.CrossRef
Metadata
Title
Pendular Oscillation and Ocular Bobbing After Pontine Hemorrhage
Authors
Tzu-Pu Chang
Daniel R. Gold
Jorge Otero-Millan
Bor-Ren Huang
David S. Zee
Publication date
01-10-2021
Publisher
Springer US
Keyword
Nystagmus
Published in
The Cerebellum / Issue 5/2021
Print ISSN: 1473-4222
Electronic ISSN: 1473-4230
DOI
https://doi.org/10.1007/s12311-019-01086-6

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