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Impact of light conditions on reading ability following multifocal pseudophakic corrections

机译:多焦点假晶状体矫正后光照条件对阅读能力的影响

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Purpose: To examine the impact of light intensity and temperature on reading performance following bilateral pseudophakic multifocal presbyopic correction. Patients and methods : This is a prospective clinic-based trial conducted at the Department of Ophthalmology in the University Hospital of Alexandroupolis, Greece. Three groups of patients were formed (G1: patients with bilateral bifocal implantation, G2: patients with bilateral trifocal implantation, and control group: patients with bilateral pseudophakic monofocal implantation). Reading ability was quantified with the Greek version of MNREAD chart with minimal reading speed at 80 words/min for the following light intensities (25, 50, and 75 Foot-Candles [FC]) and temperatures (3,000, 4,000, and 6,000 K). Preferred light conditions for reading were assessed, as well. ClinicalTrials.gov Identifier: NCT03226561. Results: Control group demonstrated significantly lower reading ability at all light combinations with maximal ability at 75 FC and 6,000 K (0.58±0.18 logMAR). Bifocal group presented a light-dependent reading ability that ranged from 0.45±0.08 logMAR (25 FC and 3,000 K) to 0.40±0.11 logMAR (75 FC and 4,000 or 6,000 K). Trifocal participants presented the best reading ability that was light intensity-independent; however, their performance was reduced at 6,000 K. G1 and G2 preferred primarily intermediate light temperature, while control participants preferred cold light temperature. Conclusion: Multifocal pseudophakic corrections improve reading ability; however, they present variable efficacy according to the light conditions.
机译:目的:研究双侧伪晶状体多焦点老花眼矫正后光强度和温度对阅读性能的影响。患者和方法:这是一项前瞻性临床试验,在希腊亚历山德鲁波利斯大学医院眼科进行。分为三组患者(G1:双侧双焦点植入患者,G2:双侧三焦点植入患者,对照组:双假晶状体单焦点植入患者)。使用希腊文版MNREAD图表对阅读能力进行了量化,对于以下光强度(25、50和75英尺烛光[FC])和温度(3,000、4,000和6,000 K),最小读取速度为80字/分钟。 。还评估了阅读的优选光照条件。 ClinicalTrials.gov标识符:NCT03226561。结果:对照组在所有光组合下均显示出明显较低的阅读能力,在75 FC和6,000 K(0.58±0.18 logMAR)时的最大阅读能力。双焦点组表现出与光有关的阅读能力,范围从0.45±0.08 logMAR(25 FC和3,000 K)到0.40±0.11 logMAR(75 FC和4,000或6,000 K)。三焦点参与者表现出最佳的阅读能力,与光强度无关。但是,它们的性能在6,000 K时降低了。G1和G2主要首选中间光照温度,而对照组参与者更喜欢冷光照温度。结论:多焦点假晶状体矫正可提高阅读能力;然而,它们根据光照条件呈现出不同的功效。

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