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首页> 外文期刊>Journal of cataract and refractive surgery >Accuracy of a dual Scheimpflug analyzer and a corneal topography system for intraocular lens power calculation in unoperated eyes.
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Accuracy of a dual Scheimpflug analyzer and a corneal topography system for intraocular lens power calculation in unoperated eyes.

机译:双Scheimpflug分析仪和角膜地形图系统的准确性,可在未手术的眼睛中计算人工晶状体的屈光力。

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PURPOSE: To evaluate the accuracy of the corneal power measurements by a dual Scheimpflug analyzer (Galilei) and a corneal topography system (Keratron) for intraocular lens (IOL) power calculation in unoperated eyes. SETTING: Private practice. DESIGN: Case series. METHODS: The IOL power was calculated for eyes having phacoemulsification and in-the-bag IOL implantation by entering into the Hoffer Q, Holladay 1, and SRK/T formulas 3 corneal power measurements: (1) simulated keratometry (K) by corneal topography, (2) simulated K derived by anterior corneal curvature only using the dual Scheimpflug analyzer, (3) total corneal power derived by anterior and posterior corneal curvatures through ray tracing using the dual Scheimpflug analyzer. The prediction error was calculated as the difference between the predicted and the measured refraction 1 month postoperatively. RESULTS: Forty-three consecutive patients were enrolled. The mean arithmetic error was zero for all combinations of measurements due to constant optimization. Using the Hoffer Q formula, the mean absolute prediction errors were 0.23 diopters (D) +/- 0.22 (SD) for the corneal topographer simulated K, 0.21 +/- 0.18 D for the Scheimpflug simulated K, and 0.27 +/-0.20 D for the Scheimpflug total corneal power (P>.05). No statistically significant different results (compared with the Hoffer Q formula) were obtained with the Holladay 1 and SRK/T formulas. CONCLUSIONS: Both devices provided corneal power measurements that led to accurate IOL power calculation. The total corneal power by the dual Scheimpflug system is the first corneal power measurement shown to lead to accurate IOL power calculation without using the standard keratometric index. FINANCIAL DISCLOSURE: Drs. Savini, Barboni, and Carbonelli have no financial or proprietary interest in any material or method mentioned. Additional disclosures are found in the footnotes.
机译:目的:通过双Scheimpflug分析仪(Galilei)和角膜地形图系统(Keratron)评估未手术眼中人工晶状体(IOL)屈光度的角膜屈光度测量的准确性。地点:私人执业。设计:案例系列。方法:通过输入Hoffer Q,Holladay 1和SRK / T公式3角膜屈光度测量值,计算具有白内障超声乳化和袋内人工晶状体植入的眼睛的IOL屈光度:(1)通过角膜地形图模拟角膜曲率法(K) ,(2)仅使用双Scheimpflug分析仪模拟由前角膜曲率得出的K,(3)使用双Scheimpflug分析仪通过射线跟踪由前和后角膜曲率得出的总角膜屈光力。预测误差计算为术后1个月预测屈光度与测量屈光度之差。结果:连续43例患者入组。由于不断优化,所有测量组合的平均算术误差为零。使用Hoffer Q公式,角膜地形图模拟K的平均绝对预测误差为0.23屈光度(D)+/- 0.22(SD),Scheimpflug模拟K的平均绝对预测误差为0.21 +/- 0.18 D,0.27 +/- 0.20 D Scheimpflug的总角膜屈光力(P> .05)。 Holladay 1和SRK / T公式未获得统计学上显着不同的结果(与Hoffer Q公式相比)。结论:这两种设备都提供了角膜屈光度测量值,从而可以精确地计算IOL屈光度。双Scheimpflug系统的总角膜屈光力是首次显示的角膜屈光力测量值,可在不使用标准角膜屈光指数的情况下实现精确的IOL屈光力计算。财务披露:Dr. Savini,Barboni和Carbonelli在提及的任何材料或方法中均无财务或所有权利益。在脚注中可以找到其他披露内容。

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