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三种不同多焦点人工晶状体的彗差和离焦性能的实验室评估。

Laboratory Evaluation of Halos and Through-Focus Performance of Three Different Multifocal Intraocular Lenses.

出版信息

J Refract Surg. 2022 Sep;38(9):552-558. doi: 10.3928/1081597X-20220802-02. Epub 2022 Sep 1.

DOI:10.3928/1081597X-20220802-02
PMID:36098393
Abstract

PURPOSE

To compare the halo features and through-focus performance of three different multifocal intraocular lenses (MIOLs) that provide distance, intermediate, and near vision in a clinical trial.

METHODS

A trifocal diffractive MIOL (AT LISA tri 839MP; Carl Zeiss Meditec), a diffractive extended depth-of-focus MIOL (TECNIS Symfony ZXR00; Abbott Laboratories, Inc), and a rotational asymmetric refractive MIOL (SBL-3; Lenstec, Inc) were assessed in a modified International Organization for Standardization eye model. The modulation transfer function (MTF) at the IOLs' foci was obtained using aperture sizes of 3 and 4.5 mm. Through-focus MTF curves were compared among all MIOLs. Images of the slit pattern were used to assess halo formation and characteristics.

RESULTS

The AT LISA tri and Symfony IOLs showed symmetric halos. The halos of the AT LISA tri IOL were larger but weaker in distance and near foci, whereas the halos of the Symfony IOL were smaller and fainter in intermediate focus. The halos of the SBL-3 IOL were asymmetric and appeared as tangentially downward weaker halos. The optical performance of diffractive MIOLs gradually deteriorated as the aperture increased. The distance foci of the AT LISA tri and SBL-3 IOLs were of similar superior optical quality, the intermediate focus of the Symfony IOL showed the best optical quality, and the near focus of the SBL-3 IOL outperformed the near foci of the remaining IOLs.

CONCLUSIONS

The differences in the design of the MIOLs translate to differences in optical performance at their foci, through-focus expressions, and halo features, which can provide further information to surgeons when selecting what IOL to implant. .

摘要

目的

在临床试验中比较三种不同多焦点人工晶状体(MIOL)的光晕特征和焦点调节性能,它们分别提供远、中、近视力。

方法

在改良的国际标准化组织眼模型中评估了三焦点衍射型 MIOL(AT LISA tri 839MP;卡尔蔡司)、衍射型扩展景深 MIOL(TECNIS Symfony ZXR00;雅培实验室公司)和旋转不对称折射型 MIOL(SBL-3;Lenstec,Inc)。使用孔径为 3 和 4.5mm 的方法获取 MIOL 焦点处的调制传递函数(MTF)。比较所有 MIOL 的焦点调节 MTF 曲线。使用狭缝模式图像评估光晕形成和特征。

结果

AT LISA tri 和 Symfony IOL 表现出对称的光晕。AT LISA tri IOL 的光晕较大,但在远、近焦点处较弱,而 Symfony IOL 的光晕较小,在中间焦点处较暗。SBL-3 IOL 的光晕不对称,呈切线向下的较弱光晕。衍射 MIOL 的光学性能随着孔径的增加而逐渐恶化。AT LISA tri 和 SBL-3 IOL 的远焦点具有相似的卓越光学质量,Symfony IOL 的中间焦点表现出最佳的光学质量,而 SBL-3 IOL 的近焦点优于其余 IOL 的近焦点。

结论

MIOL 设计的差异转化为焦点处的光学性能、焦点调节表达和光晕特征的差异,这可以为外科医生选择植入哪种 IOL 提供进一步的信息。

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