Effect of viewing distance on dynamic visual acuity.

IF 2.9 3区 医学 Q2 NEUROSCIENCES Journal of Vestibular Research-Equilibrium & Orientation Pub Date : 2025-03-18 DOI:10.1177/09574271251327957
Lien Van Laer, Allison Nogi, Jorge Serrador, Michael C Schubert
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Abstract

BackgroundPatients with dizziness and unsteadiness are commonly prescribed gaze stability exercises at varying target distances to manage vestibular impairments but lack objective tools to monitor progress. Maintaining gaze stability during head motion at near distances demands greater eye velocity relative to head velocity due to vergence and increased translational eye rotation demands.ObjectivesThis study compared dynamic visual acuity (DVA) during yaw and pitch at both near and far distances in patients and healthy controls.MethodsThis study includes individuals with unilateral vestibular deafferentation (UVD), veterans with dizziness yet healthy vestibular function, and healthy controls. The computerized DVA at near (50 cm) and far (200 cm) distances were collected. Data analysis included comparisons of near and far DVA in yaw and pitch planes.ResultsA total of 94 participants (34 UVD, 24 veterans with dizziness, 36 controls) were included. Near-distance DVA was significantly worse than far-distance DVA for the entire sample and within each group (p < 0.001).ConclusionsNear-distance DVA is more challenging than far-distance DVA across populations and planes of head rotation. Near-distance DVA may serve as a robust measure of vestibulo-ocular reflex function and offers a practical means for patients to self-monitor the effects of gaze stability training.

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来源期刊
CiteScore
5.00
自引率
4.30%
发文量
66
审稿时长
>12 weeks
期刊介绍: Journal of Vestibular Research is a peer-reviewed journal that publishes experimental and observational studies, review papers, and theoretical papers based on current knowledge of the vestibular system. Subjects of the studies can include experimental animals, normal humans, and humans with vestibular or other related disorders. Study topics can include the following: Anatomy of the vestibular system, including vestibulo-ocular, vestibulo-spinal, and vestibulo-autonomic pathways Balance disorders Neurochemistry and neuropharmacology of balance, both at the systems and single neuron level Neurophysiology of balance, including the vestibular, ocular motor, autonomic, and postural control systems Psychophysics of spatial orientation Space and motion sickness Vestibular rehabilitation Vestibular-related human performance in various environments
期刊最新文献
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