人工晶状体度数计算分析

Yu-sung Liang M.D., Tzong-chih Chi M.D., Te-tsaw Chen M.D., Yu-ching Chan M.D.
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引用次数: 17

摘要

我们分析了1981年和1982年期间100只前房人工晶状体植入术的眼生物测量和人工晶状体(IOL)度数计算。计算人工晶状体度数的方法多种多样,包括标准晶状体度数、术前基本折射、费多罗夫公式、科伦布兰德公式、宾霍斯特公式、SRK公式等。此外,我们将这些计算结果的中位数作为选择合适的IOL度数的中位数。通过术后屈光和实际植入的IOL度数来确定矫正斜视所需的IOL度数。我们对预测的人工晶状体度数与矫正远视实际所需度数的回归分析表明,标准度数和手术前基本屈光的方法不可靠,而其他方法的准确性令人满意。其中,基于生物特征数据预测的人工晶状体度数具有几乎相同的决定系数和估计的标准误差。然而,使用SRK公式和中位数幂,回归线的值最接近理想值。通过回归分析,理论公式预测人工晶状体度数的准确性与SRK回归公式相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of intraocular lens power calculation

We performed an analysis of ocular biometry and intraocular lens (IOL) power calculation on 100 eyes that had anterior chamber IOL implantation during 1981 and 1982. Various methods of calculating the IOL power were used, including the standard lens power, presurgical basic refraction, Fyodorov's formula, Colenbrander's formula, Binkhorst's formula, and the SRK formula. In addition, we took the median value of these calculated results as the median power in selecting an appropriate IOL power. The postoperative refraction and actually implanted IOL power were used to determine the IOL power needed for emmetropia. Our regression analysis of the predicted IOL power and power actually needed for emmetropia showed that the methods of standard power and presurgical basic refraction were unreliable while the rest were of satisfactory accuracy. Among the latter, all the predicted IOL powers based on the biometric data had almost the same coefficient of determination and standard error of estimate. However, with the SRK formula and the median power the values of the regression line were closest to the ideal value. With the regression analysis, the accuracy of predicted IOL power from theoretical formulas was comparable to that of the SRK regression formula.

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