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周边屈光度和高阶像差。

Peripheral refraction and higher order aberrations.

机构信息

Department of Applied Physics, Royal Institute of Technology, Stockholm, Sweden.

R&D, Johnson & Johnson Vision, Groningen, The Netherlands.

出版信息

Clin Exp Optom. 2020 Jan;103(1):86-94. doi: 10.1111/cxo.12943. Epub 2019 Aug 5.

Abstract

Peripheral image quality influences several aspects of human vision. Apart from off-axis visual functions, the manipulation of peripheral optical errors is widely used in myopia control interventions. This, together with recent technological advancements enabling the measurement of peripheral errors, has inspired many studies concerning off-axis optical aberrations. However, direct comparison between these studies is often not straightforward. To enable between-study comparisons and to summarise the current state of knowledge, this review presents population data analysed using a consistent approach from 16 studies on peripheral ocular optical quality (in total over 2,400 eyes). The presented data include refractive errors and higher order monochromatic aberrations expressed as Zernike co-efficients (reported in a subset of the studies) over the horizontal visual field. Additionally, modulation transfer functions, describing the monochromatic image quality, are calculated using individual wavefront data from three studies. The analysed data show that optical errors increase with increasing eccentricity as expected from theoretical modelling. Compared to emmetropes, myopes tend to have more hypermetropic relative peripheral refraction over the horizontal field and worse image quality in the near-periphery of the nasal visual field. The modulation transfer functions depend considerably on pupil shape (for angles larger than 30°) and to some extent, the number of Zernike terms included. Moreover, modulation transfer functions calculated from the average Zernike co-efficients of a cohort are artificially inflated compared to the average of individual modulation transfer functions from the same cohort. The data collated in this review are important for the design of ocular corrections and the development and assessment of optical eye models.

摘要

周边像质影响人类视觉的多个方面。除了离轴视觉功能外,周边像差的操控在近视控制干预中得到了广泛应用。这一点,加上最近能够测量周边像差的技术进步,激发了许多关于离轴像差的研究。然而,这些研究之间的直接比较通常并不简单。为了能够进行研究之间的比较并总结当前的知识状况,本综述介绍了使用一致方法分析的 16 项关于周边眼部光学质量的研究的群体数据(总共涉及超过 2400 只眼睛)。所呈现的数据包括使用 Zernike 系数表示的水平视野中的离焦和高阶单色像差(在部分研究中报告)。此外,使用来自三个研究的个体波前数据计算了描述单色图像质量的调制传递函数。分析的数据表明,光学误差随着离轴距离的增加而增加,这与理论模型的预测相符。与正视眼相比,近视者在水平视野中更倾向于出现远视性周边离焦,并且在鼻侧视野的近周边区域的图像质量更差。调制传递函数很大程度上取决于瞳孔形状(对于大于 30°的角度),并且在某种程度上取决于包含的 Zernike 项数。此外,从队列的平均 Zernike 系数计算得出的调制传递函数与来自同一队列的个体调制传递函数的平均值相比,会被人为夸大。本综述中汇集的数据对于眼部矫正设计以及光学眼模型的开发和评估非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b8c/6973144/efd397cfb6d9/CXO-103-86-g001.jpg

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