Suppr超能文献

使用简单光学方法进行屈光不正的自我评估。

Self-assessment of refractive errors using a simple optical approach.

作者信息

Leube Alexander, Kraft Caroline, Ohlendorf Arne, Wahl Siegfried

机构信息

Institute for Ophthalmic Research, Eberhard Karls University of Tuebingen, Tuebingen, Germany.

Technology and Innovation, Carl Zeiss Vision International GmbH, Aalen, Germany.

出版信息

Clin Exp Optom. 2018 May;101(3):386-391. doi: 10.1111/cxo.12650. Epub 2018 Jan 21.

Abstract

BACKGROUND

This explorative study investigated procedures for the self-assessment of spherocylindrical refractive errors.

METHODS

Eighteen participants with a mean age of 34.0 ± 8.8 years were enrolled. Adjustable Alvarez lenses were mounted in a rotatable ring holder and two procedures were tested for the self-adjustment: (1) rotation of the lens in three meridians: 0°, 60° and 120° and (2) rotation of the optotypes in the same meridians. Starting from maximum positive power, the participants were required to decrease the power of the Alvarez lens until the optotypes (0.0 logMAR) appeared to be clear the first time. Best-corrected visual acuity (BVA) was measured using a psychophysical staircase procedure. Bland-Altmann analysis was carried out in order to calculate the limits of agreement between the self-refraction method and the standard subjective refraction.

RESULTS

Using procedure 1, 77 per cent of the subjects achieved a VA ≥ 0.1 logMAR (6/7.5) and the same was true for 88 per cent of the subjects using procedure 2. Using procedure 1, a significantly worse BVA was found, when compared to subjective refraction (ΔVA = -0.15 logMAR, F  = 7.11, p = 0.046, median test). Analysis of variance (ANOVA) analysis showed a significant influence of the refraction method on the oblique astigmatism component J but not for the spherical equivalent M and the straight astigmatism component J (M: F  = 0.532, p = 0.661; J : F  = 0.056, p = 0.983; J : F  = 13.97, p < 0.001; ANOVA). The limits of agreement for the spherical equivalent error M were ± 1.10 D and ± 1.20 D and for the astigmatic components J ± 0.78 D and ± 0.59 D and for J ± 0.62 D and ± 0.54 D, for procedure 1 and procedure 2, respectively.

CONCLUSIONS

Fixed adjustable Alvarez lenses and rotatable stimuli can provide a fast and precise self-assessment method to measure the spherocylindrical error of the eye.

摘要

背景

本探索性研究调查了球柱面屈光不正的自我评估程序。

方法

招募了18名平均年龄为34.0±8.8岁的参与者。将可调节的阿尔瓦雷兹透镜安装在可旋转的环形支架上,并测试了两种自我调节程序:(1)在三个子午线(0°、60°和120°)上旋转透镜;(2)在相同子午线上旋转视标。从最大正屈光力开始,要求参与者降低阿尔瓦雷兹透镜的屈光力,直到视标(0.0 logMAR)首次看起来清晰。使用心理物理学阶梯程序测量最佳矫正视力(BVA)。进行布兰德-奥特曼分析,以计算自我验光法与标准主观验光之间的一致性界限。

结果

使用程序1,77%的受试者视力≥0.1 logMAR(6/7.5),使用程序2的受试者中这一比例为88%。与主观验光相比,使用程序1时发现BVA明显更差(ΔVA = -0.15 logMAR,F = 7.11,p = 0.046,中位数检验)。方差分析(ANOVA)表明,验光方法对斜向散光分量J有显著影响,但对球镜当量M和轴向散光分量J没有显著影响(M:F = 0.532,p = 0.661;J:F = 0.056,p = 0.983;J:F = 13.97,p < 0.001;ANOVA)。程序1和程序2中,球镜当量误差M的一致性界限分别为±1.10 D和±1.20 D,散光分量J的一致性界限分别为±0.78 D和±0.59 D,J的一致性界限分别为±0.62 D和±0.54 D。

结论

固定可调节的阿尔瓦雷兹透镜和可旋转的刺激可以提供一种快速、精确的自我评估方法来测量眼睛的球柱面误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a417/5947140/a220ccde1948/CXO-101-386-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验