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Two-dimensional peripheral refraction and retinal image quality in orthokeratology lens wearers

机译:二维外围折射和视网膜图像质量在矫形器镜片佩戴者中

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摘要

Orthokeratology (O-K) is a common procedure that uses rigid contact lenses to reshape the cornea while worn overnight. Beyond the correction of refractive error, it has been suggested that this approach can also be used to reduce myopia progression, possibly because it induces changes in peripheral optics. As this hypothesis remains unproven, the aim of the present study was to explore changes in peripheral retinal optical quality in a group of myopic children following O-K treatment. We provide a comprehensive description of optical characteristics in a group of myopes before and after achieving stable corneal reshaping using overnight O-K lenses. These characteristics extended across the central visual field (60° horizontal x 36° vertical) as measured with a custom Hartmman-Shack wavefront sensor. After corneal reshaping, peripheral refraction was found to be asymmetrically distributed, with a myopic relative refraction of approximately 3D in the temporal retina. Astigmatism and higher order aberrations also increased in the temporal side. Based on corneal topography following treatment, subjects were divided into two groups: Centred Treatment (CT, decentration ∈ [−0.5 + 0.5] mm) and Slightly Decentred Treatment (subjects with more decentred lenses). The process was also modelled by ray-tracing simulation. The results indicate that increased myopia in the temporal retina is caused by the decentration of lenses towards the temporal side. Peripheral optics differ significantly following O-K lens treatment, but further research is required to determine whether this is likely to affect myopia progression.
机译:俄狄克托学(O-K)是一种常见的程序,使用刚性隐形眼镜在磨损过夜时重塑角膜。除了屈光误差的校正之外,已经提出这种方法也可用于减少近视越野,可能是因为它引起了外围光学器件的变化。正如该假设仍然未经证实,本研究的目的是探讨O-K治疗后一组近视儿童的外周视网膜光学质量的变化。在使用过夜O-k镜片实现稳定的角膜重塑之前和之后,我们提供了一组近镜的光学特性的综合描述。这些特性通过定制Hartmman-Shack波前传感器测量,横跨中心视野(60°水平x 36°垂直)。在角膜重塑之后,发现外周折射在时间视网膜中具有近3D的近3D的近视相对折射。散光和高阶像差也在颞侧增加。基于治疗后的角膜地形,受试者分为两组:以中心的处理(CT,粉末∈[-0.5 + 0.5] mm)和略微好的治疗(具有更加明显的镜片的受试者)。该过程也通过射线跟踪模拟建模。结果表明,时间视网膜中的近视增加是由透镜朝向颞侧的折射率引起的。外围光学器件在O-K镜片处理之后显着差异,但需要进一步的研究来确定这是否可能影响近视近视。

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