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Positional accommodative intraocular lens power error induced by the estimation of the corneal power and the effective lens position

机译:角膜屈光力和有效晶状体位置的估计引起的位置调节型人工晶状体屈光力误差

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Purpose:To evaluate the predictability of the refractive correction achieved with a positional accommodating intraocular lenses (IOL) and to develop a potential optimization of it by minimizing the error associated with the keratometric estimation of the corneal power and by developing a predictive formula for the effective lens position (ELP).Materials and Methods:Clinical data from 25 eyes of 14 patients (age range, 52–77 years) and undergoing cataract surgery with implantation of the accommodating IOL Crystalens HD (Bausch and Lomb) were retrospectively reviewed. In all cases, the calculation of an adjusted IOL power (PIOLadj) based on Gaussian optics considering the residual refractive error was done using a variable keratometric index value (nkadj) for corneal power estimation with and without using an estimation algorithm for ELP obtained by multiple regression analysis (ELPadj). PIOLadj was compared to the real IOL power implanted (PIOLReal, calculated with the SRK-T formula) and also to the values estimated by the Haigis, HofferQ, and Holladay I formulas.Results:No statistically significant differences were found between PIOLReal and PIOLadj when ELPadj was used (P = 0.10), with a range of agreement between calculations of 1.23 D. In contrast, PIOLReal was significantly higher when compared to PIOLadj without using ELPadj and also compared to the values estimated by the other formulas.Conclusions:Predictable refractive outcomes can be obtained with the accommodating IOL Crystalens HD using a variable keratometric index for corneal power estimation and by estimating ELP with an algorithm dependent on anatomical factors and age.
机译:目的:评估使用位置可调节人工晶状体(IOL)所实现的屈光矫正的可预测性,并通过最小化与角膜屈光力的角膜屈光度估​​计相关的误差并通过开发有效屈光度的预测公式来开发其潜在的优化方法材料和方法:回顾性回顾了14例(年龄范围为52-77岁)的25眼患者的临床资料,这些患者接受了白内障手术并伴有IOL结晶HD(Bausch和Lomb)的植入。在所有情况下,使用可变角膜屈光指数值(nkadj)进行角膜屈光力估计时,基于高斯光学并考虑残留屈光误差,计算经过调整的IOL屈光力(PIOLadj),并使用和不使用通过多次获得的ELP的估计算法回归分析(ELPadj)。将PIOLadj与植入的实际IOL功率(PIOLReal,使用SRK-T公式计算)进行比较,并与Haigis,HofferQ和Holladay I公式估算的值进行比较。结果:当PIOLReal与PIOLadj进行比较时,没有发现统计学上的显着差异使用ELPadj(P = 0.10),计算之间的一致性范围为1.23 D.相比之下,与不使用ELPadj的PIOLadj相比,与其他公式估算的值相比,PIOLReal显着更高。通过使用可变的角膜屈光指数评估角膜屈光力,并使用依赖于解剖学因素和年龄的算法对ELP进行评估,可以使用相应的IOL Crystalns HD获得预后。

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