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首页> 外文期刊>European journal of ophthalmology >Imaging quality of bifocal piggyback intraocular lens versus ReSTOR and TECNIS multifocal lenses.
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Imaging quality of bifocal piggyback intraocular lens versus ReSTOR and TECNIS multifocal lenses.

机译:双焦点背Re式人工晶状体与ReSTOR和TECNIS多焦点人工晶状体的成像质量。

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PURPOSE: The imaging quality provided by a piggyback integrated by a monofocal intraocular lens (IOL) + a bifocal IOL of zero power and +3.75 diopters of addition is compared with the optics quality of a simple multifocal IOL of the same power and addition. METHODS: The imaging quality was evaluated by determining the modulation transfer function (MTF), using an artificial eye simulating in vivo conditions of the anterior chamber, including an artificial cornea and a wet cell containing physiologic solution where the IOL was positioned. The MTFs of the bifocal piggyback for near and distance vision were measured, with pupil diameters of 3 and 5 mm, and compared with the MTFs of an equivalent power of ReSTOR and TECNIS multifocal IOLs measured under the same conditions. RESULTS: The MTFs for distance and near focus of the bifocal piggyback are similar to the MTFs of the ReSTOR and TECNIS multifocal IOLs with the two diameters of pupil. A more accurate comparison, values of average modulation, and Strehl ratio show a greater similitude with ReSTOR than with TECNIS. CONCLUSIONS: The bifocal piggyback system provides a similar imaging quality to that obtained with a ReSTOR multifocal IOL and, like the ReSTOR, provides better performance in distance vision than in near vision, whereas the TECNIS multifocal IOL provides the best performance.
机译:目的:将单焦点人工晶状体(IOL)+零屈光度的双焦点IOL和+3.75屈光度的背负式积分提供的成像质量与同等屈光度数的简单多焦点IOL的光学质量进行比较。方法:使用模拟前房体内条件的人工眼,通过确定调制传递函数(MTF)来评估成像质量,包括前角膜和放置IOL的含有生理溶液的湿细胞。测量了用于近距和远距视觉的双焦点背负式的MTF,瞳孔直径为3和5 mm,并与在相同条件下测得的等效ReSTOR和TECNIS多焦点IOL的MTF进行了比较。结果:双焦点背back的距离和近焦点的MTF与具有两个瞳孔直径的ReSTOR和TECNIS多焦点IOL的MTF相似。比较准确的比较,平均调制值和Strehl比率显示,ReSTOR比TECNIS具有更好的相似性。结论:双焦点背负系统提供与ReSTOR多焦点IOL相似的成像质量,并且像ReSTOR一样,在远视方面比在近视方面提供更好的性能,而TECNIS多焦点IOL提供最佳性能。

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