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多行自适应视野检查法(MAP):一种用于量化视野完整性以快速评估黄斑疾病的新方法。

Multi-line Adaptive Perimetry (MAP): A New Procedure for Quantifying Visual Field Integrity for Rapid Assessment of Macular Diseases.

作者信息

Thurman Steven M, Maniglia Marcello, Davey Pinakin G, Biles Mandy K, Visscher Kristina M, Seitz Aaron R

机构信息

U.S. Army Research Laboratory, Human Research and Engineering Directorate, Aberdeen Proving Ground, MD, USA.

Department of Psychology, University of California, Riverside, Riverside, CA, USA.

出版信息

Transl Vis Sci Technol. 2018 Oct 16;7(5):28. doi: 10.1167/tvst.7.5.28. eCollection 2018 Sep.

Abstract

PURPOSE

In order to monitor visual defects associated with macular degeneration (MD), we present a new psychophysical assessment called multiline adaptive perimetry (MAP) that measures visual field integrity by simultaneously estimating regions associated with perceptual distortions (metamorphopsia) and visual sensitivity loss (scotoma).

METHODS

We first ran simulations of MAP with a computerized model of a human observer to determine optimal test design characteristics. In experiment 1, predictions of the model were assessed by simulating metamorphopsia with an eye-tracking device with 20 healthy vision participants. In experiment 2, eight patients (16 eyes) with macular disease completed two MAP assessments separated by about 12 weeks, while a subset (10 eyes) also completed repeated Macular Integrity Assessment (MAIA) microperimetry and Amsler grid exams.

RESULTS

Results revealed strong repeatability of MAP and high accuracy, sensitivity, and specificity (0.89, 0.81, and 0.90, respectively) in classifying patient eyes with severe visual impairment. We also found a significant relationship in terms of the spatial patterns of performance across visual field loci derived from MAP and MAIA microperimetry. However, there was a lack of correspondence between MAP and subjective Amsler grid reports in isolating perceptually distorted regions.

CONCLUSIONS

These results highlight the validity and efficacy of MAP in producing quantitative maps of visual field disturbances, including simultaneous mapping of metamorphopsia and sensitivity impairment.

TRANSLATIONAL RELEVANCE

Future work will be needed to assess applicability of this examination for potential early detection of MD symptoms and/or portable assessment on a home device or computer.

摘要

目的

为了监测与黄斑变性(MD)相关的视觉缺陷,我们提出了一种新的心理物理学评估方法,称为多线自适应视野检查法(MAP),该方法通过同时估计与感知扭曲(变视症)和视觉敏感度丧失(暗点)相关的区域来测量视野完整性。

方法

我们首先使用人类观察者的计算机模型对MAP进行模拟,以确定最佳测试设计特征。在实验1中,通过使用眼动追踪设备模拟20名视力正常参与者的变视症来评估模型的预测。在实验2中,8名黄斑疾病患者(16只眼)完成了两次间隔约12周的MAP评估,而其中一部分患者(10只眼)还完成了重复的黄斑完整性评估(MAIA)微视野检查和阿姆斯勒方格检查。

结果

结果显示MAP具有很强的可重复性,在对严重视力损害的患者眼睛进行分类时具有很高的准确性、敏感性和特异性(分别为0.89、0.81和0.90)。我们还发现,从MAP和MAIA微视野检查得出的视野位点的空间表现模式之间存在显著关系。然而,在分离感知扭曲区域方面,MAP与主观阿姆斯勒方格报告之间缺乏一致性。

结论

这些结果突出了MAP在生成视野障碍定量图方面的有效性和功效,包括同时绘制变视症和敏感度损害图。

转化相关性

未来需要开展工作,以评估该检查对于MD症状潜在早期检测的适用性,以及在家庭设备或计算机上进行便携式评估的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c73c/6192464/57b01c8670e4/i2164-2591-7-5-28-f01.jpg

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