T2 formula in a highly myopic population, comparison with other methods and description of an improved approach for estimating corneal height

被引:4
|
作者
Idrobo-Robalino, Carlos Alberto [1 ]
Santaella, Gisella [2 ]
Gutierrez, Angela Maria [2 ]
机构
[1] Hosp Eugenio Espejo, Ave Gran Colombia 170403, Quito, Ecuador
[2] Escuela Super Oftalmol, Inst Barraquer Amer, Clin Barraquer, Calle 100 18 A 51, Bogota, Colombia
关键词
T2; formula; High myopia; Corneal height estimation; Cataract surgery; Intraocular lens calculation; LENS POWER CALCULATION; ACCURACY; EYES;
D O I
10.1186/s12886-019-1226-7
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
Background To determine the accuracy of the T2 formula as applied to highly myopic eyes, to compare the T2 formula to the SRK/T and Holladay 1 formulas, and to describe possible ways to improve the estimation of corneal height and prediction error in two settings, the Hadassah Hospital, Ophthalmology Department, Jerusalem, Israel and Clinica Barraquer, Bogota, Colombia. Methods In this retrospective case series, optical biometer measurements were taken for 63 highly myopic patients (> 25 mm) undergoing uneventful crystalline lens phacoemulsification and insertion of an acrylic intraocular lens. Prediction errors were obtained, with estimations of +/- 0.50 D, +/- 1.00 D, and greater than +/- 2.00 D. A method to improve the corneal height calculation is described. Results The SRK/T formula (mean absolute error [MAE] = 0.418; median absolute error [MedAE] = 0.352) was the most accurate, followed by the T2 (MAE = 0.435; MedAE = 0.381) and Holladay 1 (MAE = 0.455; MedAE = 0.389) formulas. Both the SRK/T and T2 formulas overestimated corneal height, but values were higher with the T2 formula. Corneal height was more precisely estimated using an alternative method that, when combined with axial length optimization, resulted in lower MAE (0.425) and MedAE (0.365) values than when applying the T2 formula alone. Conclusions The T2 formula seems to be less accurate than the SRK/T formula in highly myopic eyes. An improved corneal height estimation method is described for the the T2 formula.
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