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目的评估不同的环曲面硅水凝胶接触镜的静态和动态行为。

Objective evaluation of static and dynamic behavior of different toric silicone-hydrogel contact lenses.

机构信息

Ocular Surface and Contact Lens Research Laboratory, Faculty of Optics and Optometry, University of Santiago de Compostela, Spain.

Ocular Surface and Contact Lens Research Laboratory, Faculty of Optics and Optometry, University of Santiago de Compostela, Spain.

出版信息

Cont Lens Anterior Eye. 2021 Dec;44(6):101437. doi: 10.1016/j.clae.2021.03.004. Epub 2021 Apr 9.

Abstract

PURPOSE

The present study aimed to estimate how orientation position, recovery time, and contact lens decentration, associated with visual performance, may vary on several designs of the most recent toric silicone-hydrogel toric contact lenses in two-time different moments.

METHODS

To evaluate the toric silicone-hydrogel toric contact lens position and stability, it was conducted with a prospective, observational, randomized, and single-center case series including 95 astigmatic eyes wearing four toric silicone-hydrogel toric contact lenses for two weeks. Orientation and decentration were analyzed with ImageJ software from video-frames extracted with a Python application. Recovery time was evaluated after 45 degrees of inferior-temporal misorientation.

RESULTS

Evaluation of misorientation after 20 min of wear revealed the highest amount for Saphir RX, -20.41 ± 10.84 deg, and lowest for Air Optix Aqua for Astigmatism, -1.43 ± 7.48 deg. The highest horizontal misalignment was found for Air Optix Aqua for Astigmatism, -0.627 ± 0.330 mm, and lowest for Biofinity Toric, 0.004 ± 0.270 mm. Vertical misalignment presented the highest value for Acuvue Vita for Astigmatism, -0.652 ± 0.369 mm, and lowest for Air Optix Aqua for Astigmatism, -0.126 ± 0.231 mm. Recovery time showed the highest amount for Saphir RX, 80.70 ± 33.26 s, and lowest for Biofinity Toric 43.67 ± 23.70 s. Only Air Optix Aqua for Astigmatism presented significant differences after two-week of wear for misorientation (P = 0.02) and horizontal misalignment (P < 0.001). When pairwise comparisons are made between toric silicone-hydrogel toric contact lenses, significant differences (P < 0.001) are found.

CONCLUSIONS

Although there was acceptable fitting, based upon decentration, orientation, and recovery with the study contact lenses, the stabilization and profile design used in the Air Optix Aqua for Astigmatism helped to minimize rotation and vertical misalignment. In addition, the peri-ballast and thickness profile of the Biofinity Toric improved rotational recovery and horizontal misalignment compared to the other contact lenses. Finally, lenses with a better fitting profile showed better visual performance.

摘要

目的

本研究旨在评估在两个不同时间点,与视觉性能相关的方位位置、恢复时间和隐形眼镜离焦,在最近的几款新型的硅水凝胶散光隐形眼镜设计中如何发生变化。

方法

为了评估硅水凝胶散光隐形眼镜的位置和稳定性,对 95 只患有散光的眼睛进行了前瞻性、观察性、随机和单中心病例系列研究,这些眼睛在两周内佩戴了四种硅水凝胶散光隐形眼镜。使用 Python 应用程序提取的视频帧,使用 ImageJ 软件分析方位和离焦。评估 45 度下斜视后的恢复时间。

结果

在佩戴 20 分钟后评估斜视,发现 Saphir RX 的最大量为-20.41±10.84 度,Air Optix Aqua for Astigmatism 的最小量为-1.43±7.48 度。发现水平最大的错位是 Air Optix Aqua for Astigmatism,-0.627±0.330 毫米,最低的是 Biofinity Toric,0.004±0.270 毫米。垂直偏差最高的是 Acuvue Vita for Astigmatism,-0.652±0.369 毫米,最低的是 Air Optix Aqua for Astigmatism,-0.126±0.231 毫米。恢复时间最高的是 Saphir RX,80.70±33.26 秒,最低的是 Biofinity Toric,43.67±23.70 秒。只有 Air Optix Aqua for Astigmatism 在佩戴两周后在斜视(P=0.02)和水平错位(P<0.001)方面有显著差异。当对各种散光隐形眼镜进行两两比较时,发现差异具有统计学意义(P<0.001)。

结论

尽管根据偏心度、方位和研究用隐形眼镜的恢复情况,隐形眼镜有可接受的适配,但 Air Optix Aqua for Astigmatism 中使用的稳定和轮廓设计有助于最小化旋转和垂直错位。此外,与其他隐形眼镜相比,Biofinity Toric 的周边和厚度轮廓提高了旋转恢复和水平错位。最后,具有更好适配轮廓的镜片表现出更好的视觉性能。

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