A quantitative analysis of postural control in elderly patients with vestibular disorders using visual stimulation by virtual reality.

Braz J Otorhinolaryngol

Universidade Federal de São Paulo, Departamento de Otorrinolaringologia e de Cirurgia de Cabeça e Pescoço, São Paulo, SP, Brazil. Electronic address:

Published: October 2020

Introduction: Postural instability is one the most common disabling features in vestibular disorders.

Objective: This study aimed to analyze the limit of stability and the influence of manipulation of visual, somatosensorial and visual-vestibular information on postural control in older adults with vestibular disorder, with and without a history of falls.

Methods: Cross-sectional study. Participants - 76 elderly patients with vestibular disorder (G1, without falls; G2, with falls) and 41 healthy elderly subjects (control group; CG). Using posturography, analyzed were limit of stability area, body center of pressure, and velocity of oscillation in the standing position in 10 conditions, including open/closed eyes, unstable surface with eyes closed, saccadic and optokinetic stimuli, and visual-vestibular interaction.

Results: Limit of stability area in CG was better compared with G1-2, and center of pressure values were worse in G1 than in CG. Center of pressure area in all conditions and velocity of oscillation in the following conditions: open/closed eyes, optokinetic stimulation, and visual-vestibular interaction showed worse values in G2 than in CG. Center of pressure area in the following conditions: open/closed eyes, saccadic and optokinetic stimuli, visual-vestibular interaction, and unstable surface with eyes closed showed worse values in G2 than in G1.

Conclusion: Older adults with vestibular disorder presented reduced limit of stability and increased postural sway in the following conditions: conflict between visual and somatosensory information and visual-vestibular interaction. Deterioration in postural control was significantly associated with history of falls.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9422685PMC
http://dx.doi.org/10.1016/j.bjorl.2019.03.001DOI Listing

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