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具有可变多焦点区域的多焦点隐形眼镜的屈光度分布

Power profiles in multifocal contact lenses with variable multifocal zone.

作者信息

Monsálvez-Romín Daniel, Domínguez-Vicent Alberto, García-Lázaro Santiago, Esteve-Taboada José J, Cerviño Alejandro

机构信息

Optometry Research Group, Department of Optics and Optometry and Vision Sciences, University of Valencia, Valencia, Spain.

出版信息

Clin Exp Optom. 2018 Jan;101(1):57-63. doi: 10.1111/cxo.12575. Epub 2017 Jul 18.

Abstract

BACKGROUND

The power profile of multifocal contact lenses has been demonstrated to report important information that could be used during the fitting process. The aim of this work is to describe the power profile of a recent set of gas permeable multifocal contact lenses as a function of the pupil radius.

METHODS

The measured multifocal contact lenses have a centre-distance design, and are available with five distance-vision diameters (XS, S, M, L and XL) and two different additions: Type A (up to +2.00 D) and Type B (up to +2.50 D). The optical device NIMO TR1504 (Lambda-X, Nivelles, Belgium) was used to obtain the power profile measurements. The optical lens power distribution as a function of the aperture radius was described in terms of radial computed colour maps, radial averaged power profiles, addition, and lens portion used for near vision.

RESULTS

The amount of total addition achieved depends on the diameter of the distance-vision area. That is, the bigger the distance vision area, the bigger the radius of the lens in order to get the same level of addition. In other words, the XS lens provides higher addition values compared to the XL lens design for a given aperture.

CONCLUSIONS

The XS and S designs seem to be aimed to favour near vision, whereas the L and XL designs seem to favour distance vision. For this reason, patients who demand good distance vision might benefit from the L or XL designs, and those with high demand on near-vision tasks might benefit from the XS or S designs. The M design could be the best option for those patients who have the same needs for distance and near vision.

摘要

背景

多焦点隐形眼镜的屈光力分布已被证明能报告重要信息,这些信息可在验配过程中使用。本研究的目的是描述一组新型透气硬镜多焦点隐形眼镜的屈光力分布与瞳孔半径的关系。

方法

所测量的多焦点隐形眼镜采用中心距设计,有五种远视力直径(XS、S、M、L和XL)以及两种不同的加光量可供选择:A型(最高+2.00 D)和B型(最高+2.50 D)。使用光学设备NIMO TR1504(比利时尼韦勒的Lambda-X公司)获取屈光力分布测量结果。根据径向计算彩色图、径向平均屈光力分布、加光量以及用于近视力的镜片部分来描述光学镜片屈光力随孔径半径的分布情况。

结果

实现的总加光量取决于远视力区域的直径。也就是说,远视力区域越大,为获得相同加光量水平所需的镜片半径就越大。换句话说,对于给定孔径,XS镜片比XL镜片设计提供更高的加光量值。

结论

XS和S设计似乎更有利于近视力,而L和XL设计似乎更有利于远视力。因此,对远视力要求较高的患者可能受益于L或XL设计,而对近视力任务要求较高的患者可能受益于XS或S设计。M设计可能是对远视力和近视力有相同需求的患者的最佳选择。

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