对具有 "之 "字形 L 形环触觉设计的新型疏水性丙烯酸一体式多焦点眼内透镜进行光学台架评估。

Q2 Medicine Vision (Switzerland) Pub Date : 2024-11-14 DOI:10.3390/vision8040066
Andreas F Borkenstein, Eva-Maria Borkenstein, Pooria Omidi, Achim Langenbucher
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引用次数: 0

摘要

目的:随着白内障手术后不再戴眼镜的愿望日益强烈,老花眼矫正(优质)眼内透镜(IOL)的数量也在稳步增长。本实验室研究的目的是评估一种新推出的疏水性丙烯酸多焦点屈光性眼内透镜,它具有新的光学设计和几何形状。这种多焦点人工晶体有三个不同的区域(光学区内),采用径向不对称设计:我们进行了光学台架测试,以计算样品的光学特性。我们使用 NIMO TR0815 (Lambda-X)分析了符合 ISO 11979-2 和 11979-9 要求的人工晶体的光学性能和质量。此外,还使用 IOLA MFD 设备(Rotlex)评估了光学质量指标。对球面、增量、调制传递函数(MTF)、模式间的能量分布以及从远到近整个范围内的 MTF 进行了分析:功率直方图显示,测试的人工晶体具有多焦点人工晶体的特征,光功率范围在 20.5 和 24.5 屈光度之间。观察到两个明显的峰值,表明具有双焦点功能。在径向和轴向功率表面图中,可以检测到该公司所说的所有三个区域。孔径越大,远处峰值的 MTF 就越大,表明在弱光条件下对远处物体的视觉敏锐度越高。据观察,在孔径较小的情况下,中间视力似乎占主导地位。随着光圈尺寸的增大,能量分布几乎保持不变:这项实验室研究证实了该公司所述多焦点镜片的特性。可以确定三个光学区。不过,还需要进行进一步的光学台架测试,以评估新镜片在倾斜和偏心条件下的性能。临床研究必须证实,老花眼矫正多焦点镜片能达到良好的临床效果,患者满意度高,且不会产生副作用。
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Optical Bench Evaluation of a Novel, Hydrophobic, Acrylic, One-Piece, Polyfocal Intraocular Lens with a "Zig-Zag" L-Loop Haptic Design.

Purpose: The number of presbyopia-correcting (premium) intraocular lenses (IOLs) is growing steadily as the desire for spectacle independence after cataract surgery increases. The aim of this laboratory study was to evaluate a newly launched hydrophobic, acrylic, polyfocal, refractive intraocular lens with a new optical design and geometry. This polyfocal IOL has three different zones (within the optic) with radially asymmetric design.

Methods: We performed optical bench tests to calculate the optical characteristics of the sample. The optical performance and quality of IOLs based on ISO 11979-2 and 11979-9 requirements were analyzed with the NIMO TR0815 (Lambda-X). In addition, optical quality metrics were evaluated with the IOLA MFD device (Rotlex). Sphere, Add, modulation transfer function (MTF), the energy distribution between the modes and the MTF along the whole range from far to near were analyzed.

Results: The power histogram showed that the tested IOL has the characteristics of a polyfocal IOL with a wide range of optical power between 20.5 and 24.5 diopters. Two distinct peaks were observed, indicating bifocal functionality. In the radial and axial power surface map, all three zones, stated by the company, could be detected. Larger apertures lead to a significant increase in MTF at the far peak, indicating better visual acuity for distant objects under low-light conditions. It was observed that in small aperture sizes, intermediate vision seems to be dominant. The energy distribution remained almost constant with increasing aperture size.

Conclusions: This laboratory study was able to confirm the properties of the polyfocal lens stated by the company. Three optical zones could be identified. However, further optical bench tests should be performed to evaluate the new lens under tilted and decentered conditions. Clinical studies have to confirm that the presbyopia-correcting, polyfocal lens can achieve good clinical results with high patient satisfaction without disturbing side effects.

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来源期刊
Vision (Switzerland)
Vision (Switzerland) Health Professions-Optometry
CiteScore
2.30
自引率
0.00%
发文量
62
审稿时长
11 weeks
期刊最新文献
Optical Bench Evaluation of a Novel, Hydrophobic, Acrylic, One-Piece, Polyfocal Intraocular Lens with a "Zig-Zag" L-Loop Haptic Design. Optimal Timing for Intraocular Pressure Measurement Following Phacoemulsification Cataract Surgery: A Systematic Review and a Meta-Analysis. Corneal Endothelial Microscopy: Does a Manual Recognition of the Endothelial Cells Help the Morphometric Analysis Compared to a Fully Automatic Approach? Combined Epiretinal Proliferation and Internal Limiting Membrane Inverted Flap for the Treatment of Large Macular Holes. Comparison of Four Methods for Measuring Heterophoria and Accommodative Convergence over Accommodation Ratio.
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