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Ocular torsion responses to electrical vestibular stimulation in vestibular schwannoma.

Authors :
Mackenzie, Stuart W.
Irving, Richard
Monksfield, Peter
Kumar, Raghu
Dezso, Attila
Reynolds, Raymond F.
Source :
Clinical Neurophysiology. Nov2018, Vol. 129 Issue 11, p2350-2360. 11p.
Publication Year :
2018

Abstract

Highlights • Electrical vestibular stimulation (EVS)-evoked eye movements are trackable with an infrared camera. • Unilateral vestibular schwannoma attenuated the ocular torsion response to EVS. • EVS-evoked ocular torsion responses provide a convenient, non-invasive vestibular assessment. Abstract Objectives We determined if eye movements evoked by Electrical Vestibular Stimulation (EVS) can be used to detect vestibular dysfunction in patients with unilateral vestibular schwannoma (VS). Methods Ocular torsion responses to monaural sinusoidal EVS currents (±2 mA, 2 Hz) were measured in 25 patients with tumours ranging in size from Koos grade 1–3. For comparative purposes we also measured postural sway response to EVS, and additionally assessed vestibular function with the lateral Head Impulse Test (HIT). Patient responses were compared to age-matched healthy control subjects. Results Patients exhibited smaller ocular responses to ipsilesional versus contralesional EVS, and showed a larger asymmetry ratio (AR) than control subjects (19.4 vs. 3.3%, p < 0.05). EVS-evoked sway responses were also smaller in ipsilesional ear, but exhibited slightly more variability than the eye movement response, along with marginally lower discriminatory power (patients vs. controls: AR = 16.6 vs 2.6%, p < 0.05). The HIT test exhibited no significant difference between groups. Conclusions These results demonstrate significant deficits in the ocular torsion response to EVS in VS patients. Significance The fast, convenient and non-invasive nature of the test are well suited to clinical use. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13882457
Volume :
129
Issue :
11
Database :
Academic Search Index
Journal :
Clinical Neurophysiology
Publication Type :
Academic Journal
Accession number :
132512042
Full Text :
https://doi.org/10.1016/j.clinph.2018.08.023