The vertical linear vestibulo-ocular reflex in patients with a hyperactive response during horizontal angular acceleration. 2003

Frank Schmäl, and Rudolf Kunz, and Wolfgang Stoll
Department of Otorhinolaryngology, Head and Neck Surgery, University of Münster, Münster, Germany. schmael.hno@uni-muenster.de

OBJECTIVE In clinical routine, some patients show a bilateral hyperactive response of the angular vestibulo-ocular reflex (AVOR). The aim of this prospective study was to determine whether these patients also show hyperactivity of the linear VOR (LVOR). METHODS In 10 patients with a hyperactive AVOR (total amplitude of post-rotatory nystagmus > 400 degrees per 30 s) and 10 healthy subjects the AVOR (stopped after 180 s of rotation at 90 degrees/s) and vertical LVOR (amplitude 5 cm, frequency 1.2 Hz) were tested with eyes open in the dark. During vertical linear acceleration, each subject was instructed to look at an earth-fixed target and they performed vertical smooth pursuit as stationary observers. RESULTS The mean eye velocity of the AVOR was significantly higher in the patients than the healthy subjects (19 vs 5 degrees/s; p = 0.00016). During vertical linear acceleration in darkness (49 vs 23 degrees/s; p = 0.004) and combined maculo-visual stimulation (88 vs 52 degrees/s; p = 0.007) the patients showed a significantly higher mean vertical eye velocity. When vertical smooth pursuit was performed, no significant differences were registered. All 20 subjects showed a significant (p = 0.01) positive Spearmnan correlation (rs = 0.79) between the eye velocities of AVOR and LVOR. CONCLUSIONS Patients with a hyperactive AVOR also showed hyperactivity of the LVOR. Because two different sensory end organs and neuronal pathways are involved in these responses, a central rather than a peripheral vestibular lesion must be held responsible.

UI MeSH Term Description Entries
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D009760 Nystagmus, Physiologic Involuntary rhythmical movements of the eyes in the normal person. These can be naturally occurring as in end-position (end-point, end-stage, or deviational) nystagmus or induced by the optokinetic drum (NYSTAGMUS, OPTOKINETIC), caloric test, or a rotating chair. Nystagmus, Barany,Nystagmus, Caloric,Nystagmus, End-Position,Nystagmus, Positional,Nystagmus, Post-Rotatory,Nystagmus, Thermal,Nystagmus, Barany's,Nystagmus, Physiological,Physiologic Nystagmus,Barany Nystagmus,Barany's Nystagmus,Caloric Nystagmus,End-Position Nystagmus,Nystagmus, Baranys,Nystagmus, End Position,Nystagmus, Post Rotatory,Physiological Nystagmus,Positional Nystagmus,Post-Rotatory Nystagmus,Thermal Nystagmus
D012021 Reflex, Abnormal An abnormal response to a stimulus applied to the sensory components of the nervous system. This may take the form of increased, decreased, or absent reflexes. Hyperreflexia,Hyporeflexia,Abnormal Deep Tendon Reflex,Abnormal Reflex,Abnormal Reflexes,Bulbocavernosus Reflex, Decreased,Bulbocavernousus Reflex Absent,Hoffman's Reflex,Palmo-Mental Reflex,Reflex, Absent,Reflex, Acoustic, Abnormal,Reflex, Anal, Absent,Reflex, Anal, Decreased,Reflex, Ankle, Abnormal,Reflex, Ankle, Absent,Reflex, Ankle, Decreased,Reflex, Biceps, Abnormal,Reflex, Biceps, Absent,Reflex, Biceps, Decreased,Reflex, Corneal, Absent,Reflex, Corneal, Decreased,Reflex, Decreased,Reflex, Deep Tendon, Abnormal,Reflex, Deep Tendon, Absent,Reflex, Gag, Absent,Reflex, Gag, Decreased,Reflex, Knee, Abnormal,Reflex, Knee, Decreased,Reflex, Moro, Asymmetric,Reflex, Pendular,Reflex, Triceps, Abnormal,Reflex, Triceps, Absent,Reflex, Triceps, Decreased,Reflexes, Abnormal,Absent Reflex,Decreased Bulbocavernosus Reflex,Decreased Reflex,Palmo Mental Reflex,Pendular Reflex,Reflex Absent, Bulbocavernousus,Reflex, Decreased Bulbocavernosus,Reflex, Hoffman's,Reflex, Palmo-Mental
D012027 Reflex, Vestibulo-Ocular A reflex wherein impulses are conveyed from the cupulas of the SEMICIRCULAR CANALS and from the OTOLITHIC MEMBRANE of the SACCULE AND UTRICLE via the VESTIBULAR NUCLEI of the BRAIN STEM and the median longitudinal fasciculus to the OCULOMOTOR NERVE nuclei. It functions to maintain a stable retinal image during head rotation by generating appropriate compensatory EYE MOVEMENTS. Vestibulo-Ocular Reflex,Reflex, Vestibuloocular,Reflexes, Vestibo-Ocular,Reflexes, Vestibuloocular,Reflex, Vestibulo Ocular,Reflexes, Vestibo Ocular,Vestibo-Ocular Reflexes,Vestibulo Ocular Reflex,Vestibuloocular Reflex,Vestibuloocular Reflexes
D005133 Eye Movements Voluntary or reflex-controlled movements of the eye. Eye Movement,Movement, Eye,Movements, Eye
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000054 Acceleration An increase in the rate of speed. Accelerations
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults

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