同时近视离焦控制近视:对非老花眼患者调节、外周屈光和视网膜图像质量的影响

3区 物理与天体物理 Q1 Materials Science
Alina Fritschi, Chloe Gerber, Damian Eggler, Martin Loertscher
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引用次数: 0

摘要

将视网膜暴露于同时近视离焦是一种光学方法,在减缓近视进展方面显示出有希望的效果。使用同时离焦的光学治疗以软性隐形眼镜或多焦镜片的形式提供,最初设计用于矫正老花眼。角膜塑形镜是另一种减缓近视进展的光学方法。在角膜塑形术中,假设外周屈光的改变可以减缓近视的进展。我们的目的是测量年轻受试者在单焦点和多焦点隐形眼镜之间的调节反应。此外,我们进行了光线追踪模拟,以可视化视网膜图像的质量和视网膜周围的屈光状态。对29名年龄为24.03±2.73岁、屈光不正(球面等效)为- 1.78±1.06 D的参与者进行了调节和瞳孔大小测量。在原位多焦隐形眼镜的情况下,与单焦隐形眼镜相比,参与者在聚焦40 cm的近距离目标时表现出更小的调节(平均差为0.576±0.36 D, p > 0.001)。两组隐形眼镜的瞳孔在调节期间分别变小0.29±0.69 mm (p≤0.001)和0.39±0.46 mm (p≤0.001)。多焦点隐形眼镜的光线追踪模型显示出中央和周边视觉的退化。在两种隐形眼镜条件下,周围屈光度均相对较低,达30°。即使调节能力无故障,部分同时近视眼离焦也被用于近视眼任务。在光线追踪模型中,两种隐形眼镜的周围折射没有差异。这与当前光学方法中提出的近视外周屈光减缓近视进展的假设相反。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous Myopic Defocus for Myopia Control: Effect on Accommodation, Peripheral Refraction and Retinal Image Quality in Non-Presbyopic Patients
Exposing the retina to a simultaneous myopic defocus is an optical method that has shown a promising effect in slowing the progression of myopia. Optical treatments applying a simultaneous defocus are available in the form of soft contact lenses or multifocal lenses originally designed to correct presbyopia. Orthokeratology is another optical method that slows down the progression of myopia. With orthokeratology, it is hypothesized that a change in peripheral refraction could slow the progression of myopia. We aimed to measure the accommodation response between monofocal and multifocal contact lenses in young subjects. Additionally, we performed a ray-tracing simulation to visualize the quality of the retinal image and the refractive status in the retinal periphery. The accommodation and pupil size measurements were performed on 29 participants aged 24.03 ± 2.73 years with a refractive error (spherical equivalent) of −1.78 ± 1.06 D. With the multifocal lens in situ, our participants showed less accommodation in comparison to the monofocal contact lens (mean difference, 0.576 ± 0.36 D, p > 0.001) when focusing on a near target at 40 cm. Pupil size became smaller in both contact lens groups during an accommodation of 0.29 ± 0.69 mm, p ≤ 0.001 and 0.39 ± 0.46 mm, p ≤ 0.001 for monofocal and multifocal contact lenses, respectively. The ray-tracing model showed a degradation for central and peripheral vision with the multifocal contact lens. The peripheral refraction was relatively myopic in both contact lens conditions up to 30°. Even if the accommodation ability is without fault, parts of simultaneous myopic defocus are used for the near task. The peripheral refraction in the ray-tracing model was not different between the two contact lenses. This is contrary to the proposed hypothesis that myopic peripheral refraction slows down the progression of myopia in current optical methods.
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来源期刊
Progress in Optics
Progress in Optics 物理-光学
CiteScore
4.50
自引率
0.00%
发文量
8
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