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准分子激光原位角膜磨镶术的角膜屈光力矫正系数

Corneal power correction factor for photorefractive keratectomy.

作者信息

Mandell R B

机构信息

School of Optometry, University of California, Berkeley 94720.

出版信息

J Refract Corneal Surg. 1994 Mar-Apr;10(2):125-8.

PMID:7517285
Abstract

BACKGROUND

Studies of corneal power changes resulting from photorefractive keratectomy generally rely on keratometer or videokeratograph measurements. These instruments convert corneal radius of curvatures values to optical powers by means of the single refracting surface formula, which incorporates an index of refraction value of 1.3375. This index approximates that of the tears but not the 1.376 index of the corneal epithelium or stroma. A hypothetical optical model was used to determine the most appropriate index to be chosen with respect to corneal power calculations relative to photorefractive keratectomy.

METHODS

The contribution of each refractive element in the tear lens-corneal surface to the total power of the eye was calculated in order to identify which index of refraction was most appropriate for the corneal power calculation.

RESULTS

The outer tear surface has significant optical power but the tear layer as a whole has nearly zero power due to the offsetting negative power of the posterior test surface. There is no significant difference in the effective power of light leaving the corneal anterior surface when considered with or without the tear layer. Photorefractive keratectomy changes the epithelium and anterior surface of the corneal stroma, but does not affect the posterior stroma or other ocular media. Hence the refractive index for the corneal epithelium or stroma of 1.376 should be used in converting radius to optical power values. The error in assuming a corneal index of 1.3375 is a constant proportion equal to 11.4% of the corneal power reading.

CONCLUSIONS

Photorefractive keratectomy presents a situation in which the actual corneal refractive index of 1.376 should be used for correct corneal radius to power conversions. This may be accomplished by changing the index value in the instrument algorithm for keratometry and videokeratography to 1.376 or by adding a correction factor of either 11.4% of the regular reading to its value or multiplying by the factor 1.114. In other applications of keratometry or videokeratography, the index 1.3375 may be more appropriate.

摘要

背景

准分子激光角膜切削术(PRK)引起的角膜屈光力变化的研究通常依赖于角膜曲率计或角膜地形图测量。这些仪器通过单折射面公式将角膜曲率半径值转换为屈光力,该公式采用的折射率值为1.3375。这个折射率近似于泪液的折射率,但并非角膜上皮或基质的1.376折射率。使用一个假设的光学模型来确定在准分子激光角膜切削术相关的角膜屈光力计算中应选择的最合适折射率。

方法

计算泪膜 - 角膜表面各屈光元件对眼总屈光力的贡献,以确定哪种折射率最适合角膜屈光力计算。

结果

泪膜外表面具有显著的屈光力,但由于后表面的负屈光力抵消,整个泪膜的屈光力几乎为零。考虑有无泪膜时,离开角膜前表面的光的有效屈光力无显著差异。准分子激光角膜切削术改变角膜上皮和角膜基质前表面,但不影响后基质或其他眼内介质。因此,在将半径转换为屈光力值时,应使用角膜上皮或基质的折射率1.376。假设角膜折射率为1.3375时的误差是一个恒定比例,等于角膜屈光力读数的11.4%。

结论

准分子激光角膜切削术表明,在将角膜半径正确转换为屈光力时应使用实际角膜折射率1.376。这可以通过将角膜曲率计和角膜地形图仪的仪器算法中的折射率值更改为1.376,或者将常规读数的11.4%作为校正因子加到其值上,或乘以因子1.114来实现。在角膜曲率计或角膜地形图仪的其他应用中,折射率1.3375可能更合适。

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