首页> 外文期刊>Journal of refractive surgery >Higher order aberrations and low contrast vision function in myopic eyes (-3.00 to -6.00 d) under mesopic conditions.
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Higher order aberrations and low contrast vision function in myopic eyes (-3.00 to -6.00 d) under mesopic conditions.

机译:中视条件下近视眼(-3.00至-6.00 d)的高阶像差和低对比度视觉功能。

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PURPOSE: To investigate the relationship between higher order aberrations and low contrast visual acuity in myopic eyes under mesopic conditions. METHODS: This prospective, observational case series included 52 patients (29 women, 23 men) aged 18 to 35 years. Ocular higher order aberration was measured under mesopic conditions using the Hartmann-Shack wavefront analyzer, and high (100%) and low contrast (5%, 10%, and 25%) visual acuity was measured using a multi-function visual acuity tester under the same conditions. RESULTS: Multiple linear regression analysis revealed that spherical aberrations were significantly associated with low contrast visual acuity at a low contrast level. The correlation coefficients of spherical-like aberration (S(4)) were 0.393, 0.315, and 0.419 at 5%, 10%, and 25%, respectively (P=.004, .023, and .002, respectively). The correlation coefficient of spherical aberration ( C40) was 0.373 at the 5% contrast visual acuity level (P=.006). However, coma and other higher order aberrations did not correlate statistically (P>.05). CONCLUSIONS: Relationships exist between S(4) and C40 and low contrast visual acuity. Effects on low contrast visual acuity increase with the value of spherical aberration. This suggests that less spherical aberration may provide optimal visual function under night conditions.
机译:目的:探讨近视眼中视条件下高阶像差与低对比度视敏度之间的关系。方法:该前瞻性观察病例系列包括52例年龄在18至35岁之间的患者(29例女性,23例男性)。使用Hartmann-Shack波前分析仪在介观条件下测量眼睛高阶像差,并使用多功能视敏度测试仪在以下条件下测量高(100%)和低对比度(5%,10%和25%)的视力相同的条件。结果:多元线性回归分析表明,在低对比度水平下,球差与低对比度视力显着相关。球形像差(S(4))的相关系数分别为5%,10%和25%时分别为0.393、0.315和0.419(分别为P = .004,.023和.002)。在5%对比视力水平下(P = .006),球差(C40)的相关系数为0.373。然而,昏迷和其他高阶像差在统计学上没有相关性(P> .05)。结论:S(4)和C40与低对比度视敏度之间存在关系。低对比度视力的影响随球差值的增加而增加。这表明较少的球差可在夜间条件下提供最佳的视觉功能。

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