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散光人工晶状体偏心情况下的光学性能。

Optical performance of toric intraocular lenses in the presence of decentration.

作者信息

Zhang Bin, Ma Jin-Xue, Liu Dan-Yan, Du Ying-Hua, Guo Cong-Rong, Cui Yue-Xian

机构信息

Department of Ophthalmology, the Second Hospital of Hebei Medical University, Shijiazhuang 050000, Hebei Province, China.

出版信息

Int J Ophthalmol. 2015 Aug 18;8(4):730-5. doi: 10.3980/j.issn.2222-3959.2015.04.16. eCollection 2015.

Abstract

AIM

To evaluate the optical performance of toric intraocular lenses (IOLs) after decentration and with different pupil diameters, but with the IOL astigmatic axis aligned.

METHODS

Optical performances of toric T5 and SN60AT spherical IOLs after decentration were tested on a theoretical pseudophakic model eye based on the Hwey-Lan Liou schematic eye using the Zemax ray-tracing program. Changes in optical performance were analyzed in model eyes with 3-mm, 4-mm, and 5-mm pupil diameters and decentered from 0.25 mm to 0.75 mm with an interval of 5° at the meridian direction from 0° to 90°. The ratio of the modulation transfer function (MTF) between a decentered and a centered IOL (MTFDecentration/MTFCentration) was calculated to analyze the decrease in optical performance.

RESULTS

Optical performance of the toric IOL remained unchanged when IOLs were decentered in any meridian direction. The MTFs of the two IOLs decreased, whereas optical performance remained equivalent after decentration. The MTFDecentration/MTFCentration ratios of the IOLs at a decentration from 0.25 mm to 0.75 mm were comparable in the toric and SN60AT IOLs. After decentration, MTF decreased further, with the MTF of the toric IOL being slightly lower than that of the SN60AT IOL. Imaging qualities of the two IOLs decreased when the pupil diameter and the degree of decentration increased, but the decrease was similar in the toric and spherical IOLs.

CONCLUSIONS

Toric IOLs were comparable to spherical IOLs in terms of tolerance to decentration at the correct axial position.

摘要

目的

评估散光人工晶状体(IOL)在偏心以及不同瞳孔直径情况下的光学性能,但IOL散光轴需对齐。

方法

基于Hwey-Lan Liou示意眼,使用Zemax光线追踪程序,在理论假晶状体模型眼上测试偏心后散光T5和SN60AT球形IOL的光学性能。在瞳孔直径为3毫米、4毫米和5毫米且在子午线方向从0°到90°以5°间隔偏心0.25毫米至0.75毫米的模型眼中分析光学性能的变化。计算偏心IOL与居中IOL之间的调制传递函数(MTF)之比(MTF偏心/MTF居中),以分析光学性能的下降情况。

结果

当IOL在任何子午线方向偏心时,散光IOL的光学性能保持不变。两种IOL的MTF均下降,但偏心后光学性能仍相当。在散光IOL和SN60AT IOL中,偏心0.25毫米至0.75毫米时IOL的MTF偏心/MTF居中比值相当。偏心后,MTF进一步下降,散光IOL的MTF略低于SN60AT IOL。当瞳孔直径和偏心程度增加时,两种IOL的成像质量均下降,但散光IOL和球形IOL的下降情况相似。

结论

在正确轴向位置,散光IOL在偏心耐受性方面与球形IOL相当。

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