不同光学设计的双焦近视隐形眼镜的短期泪膜稳定性、光学质量和视觉性能。

IF 2.4
José Vicente García-Marqués, Rute Juliana Macedo-De-Araújo, Colm McAlinden, Miguel Faria-Ribeiro, Alejandro Cerviño, José Manuel González-Méijome
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引用次数: 4

摘要

目的:评价和比较两种不同内带直径双焦(DF)原型近视控制隐形眼镜(CLs)的短期视觉光学质量和泪膜稳定性。方法:28名近视受试者被纳入这项随机、双盲交叉研究。在基线(即未矫正时)测量屈光、最佳矫正视力(VA)和泪膜稳定性。然后,受试者双眼安装DF CLs,只评估感觉优势眼。透镜材料相同,内区直径分别为2.1 mm (S设计)或4.0 mm (M设计)。对每种晶状体的视觉和物理短期晶状体舒适度、过度屈光、最佳校正后的VA、40 cm处的立体视、最佳校正后的感光和介观对比灵敏度(CS)、光干扰大小和形状(LD)、波前像差、主观视觉质量(QoV问卷)和泪膜稳定性进行测量。结果:与基线相比,两种CL设计都降低了泪膜稳定性(p)。结论:两种DF CL在光化条件下提供了可接受的视觉表现。4.0 mm的内区在高频率下具有较好的对比灵敏度和较低的光干扰,而2.1 mm的中心直径在5 mm的瞳孔直径下产生较少的高阶像差。两种CLs产生相同的主观视觉短期晶状体舒适度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Short-term tear film stability, optical quality and visual performance in two dual-focus contact lenses for myopia control with different optical designs.

Short-term tear film stability, optical quality and visual performance in two dual-focus contact lenses for myopia control with different optical designs.

Short-term tear film stability, optical quality and visual performance in two dual-focus contact lenses for myopia control with different optical designs.

Short-term tear film stability, optical quality and visual performance in two dual-focus contact lenses for myopia control with different optical designs.

Purpose: To assess and compare short-term visual and optical quality and tear film stability between two dual-focus (DF) prototype myopia control contact lenses (CLs) having different inner zone diameters.

Methods: Twenty-eight myopic subjects were included in this randomised, double-masked crossover study. Refraction, best-corrected visual acuity (VA) and tear film stability were measured at baseline (i.e., when uncorrected). Subjects were then binocularly fitted with the DF CLs, with only the sensorial dominant eye being assessed. Lenses were of the same material and had inner zone diameters of either 2.1 mm (S design) or 4.0 mm (M design). Visual and physical short-term lens comfort, over-refraction, best-corrected VA, stereopsis at 40 cm, best-corrected photopic and mesopic contrast sensitivity (CS), size and shape of light disturbance (LD), wavefront aberrations, subjective quality of vision (QoV Questionnaire) and tear film stability were measured for each lens.

Results: Both CL designs decreased tear film stability compared with baseline (p < 0.05). VA and photopic CS were within normal values for the subjects' age with each CL. When comparing lenses, the M design promoted better photopic CS for the 18 cycles per degree spatial frequency (p < 0.001) and better LD (p < 0.02). However, higher-order aberrations were improved with the S design (p = 0.02). No significant difference between the two CLs was found for QoV scores and tear film stability.

Conclusions: Both DF CLs provided acceptable visual performance under photopic conditions. The 4.0 mm inner zone gave better contrast sensitivity at high frequencies and lower light disturbance, while the 2.1 mm central diameter induced fewer higher-order aberrations for a 5 mm pupil diameter. Both CLs produced the same subjective visual short-term lens comfort.

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