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扫频视觉诱发电位和扩展电极阵列快速客观评估对比敏感度和视力。

Rapid Objective Assessment of Contrast Sensitivity and Visual Acuity With Sweep Visual Evoked Potentials and an Extended Electrode Array.

机构信息

Faculty of Medicine, University of Louvain, Belgium.

Psychological Sciences Research Institute, Institute of Neuroscience, University of Louvain, Belgium.

出版信息

Invest Ophthalmol Vis Sci. 2018 Feb 1;59(2):1144-1157. doi: 10.1167/iovs.17-23248.

Abstract

PURPOSE

Sweep visual evoked potentials (sVEPs) provide an implicit, objective, and sensitive evaluation of low-level visual functions such as visual acuity and contrast sensitivity. For practical and traditional reasons, sVEPs in ophthalmologic examinations have usually been recorded over a single or a limited number of electrodes over the medial occipital region. Here we examined whether a higher density of recording electrodes improves the estimation of individual low-level visual thresholds with sVEPS, and to which extent such testing could be streamlined for clinical application.

METHODS

To this end, we tested contrast sensitivity and visual acuity in 26 healthy adult volunteers with a 68-electrode electroencephalogram (EEG) system.

RESULTS

While the most sensitive electrophysiologic response was found at the traditional medial occipital electrode Oz in a small majority of individuals, it was found at neighboring electrodes for the remaining participants. At the group level, lower spatial frequencies were also associated with right lateralized responses. More generally, visual function was evaluated more sensitively based on EEG recorded at the most sensitive electrode defined individually for each participant. Our data suggest that recording over seven posterior electrodes while limiting the testing session to less than 15 minutes ensures a sensitive and consistent estimation of acuity and contrast sensitivity threshold estimates in every individual.

CONCLUSIONS

The present study shows that sampling from a larger number of posterior scalp electrodes is relevant to optimize visual function assessment and could be achieved efficiently in the time-constrained clinical setting.

摘要

目的

扫视视觉诱发电位(sVEPs)提供了一种对低水平视觉功能(如视力和对比敏感度)的隐式、客观和敏感的评估。出于实际和传统的原因,眼科检查中的 sVEPs 通常是在中枕部区域的单个或有限数量的电极上记录的。在这里,我们研究了增加记录电极的密度是否可以提高 sVEPs 对个体低水平视觉阈值的估计,以及这种测试在多大程度上可以简化为临床应用。

方法

为此,我们使用 68 电极脑电图(EEG)系统测试了 26 名健康成年志愿者的对比敏感度和视力。

结果

虽然在大多数个体中,最敏感的电生理反应是在传统的中枕部电极 Oz 上发现的,但在其余参与者中,它是在相邻电极上发现的。在组水平上,较低的空间频率也与右侧偏侧化反应相关。更一般地说,基于为每个参与者单独定义的最敏感电极记录的 EEG,可以更敏感地评估视觉功能。我们的数据表明,在不到 15 分钟的时间内记录七个后头部电极,并限制测试时间,可确保在每个个体中敏感和一致地估计视力和对比敏感度阈值。

结论

本研究表明,从更多的后头皮电极采样对于优化视觉功能评估是相关的,并且可以在时间受限的临床环境中有效地实现。

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