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Improving the accuracy of the SRK/T formula in Chinese with implanting less than 10 D IOL calculated by the SRK/T formula: the SRK/T-Li formula
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Abstract
Purpose To explore the accuracy of the improved SRK/T-Li formula in eyes following implantation of intraocular lens (IOL) of less than 10 D as calculated by using the SRK/T formula in Chinese.Methods A total of 489 eyes from 489 patients with cataracts were included in this study. These patients were divided into a training set (271 patients) and a testing set (218 patients). The IOL power calculated by using SRK/T was less than 10 D. We evaluated the accuracy of the modified SRK/T-Li formula (P = PSRK/T × 0.8 + 2 (P = implanted IOL power; PSRK/T = IOL power calculated by SRK/T)). We evaluated the mean absolute error (MAE), percentage of prediction error (PE) within ± 0.25, ± 0.50, and ± 1.00 D, and the percentage of postoperative hyperopia.Results The MAE values in order of lowest to highest were as follows: 0.412 D (SRK/T-Li), 0.414 D (Barrett Universal II, (BUII)), 0.814 D (SRK/T), and 1.039 D (Holladay 1). The percentage of PE within ± 0.25 D, ± 0.50 D, and ± 1.00 D was 38.99%, 69.27% and 92.66% (BUII), 40.83%, 69.27% and 94.04% (SRK/T-Li), 20.64%, 41.28% and 71.56% (SRK/T), and 7.34%, 16.51% and 53.21% (Holladay 1), respectively. SRK/T-Li had the smallest postoperative hyperopic shift.Conclusions For Chinese patients with an IOL power of less than 10 D as calculated by using the SRK/T, the SRK/T-Li has good accuracy and is the best choice to reduce postoperative hyperopic shift.
Research Square Platform LLC
Title: Improving the accuracy of the SRK/T formula in Chinese with implanting less than 10 D IOL calculated by the SRK/T formula: the SRK/T-Li formula
Description:
Abstract
Purpose To explore the accuracy of the improved SRK/T-Li formula in eyes following implantation of intraocular lens (IOL) of less than 10 D as calculated by using the SRK/T formula in Chinese.
Methods A total of 489 eyes from 489 patients with cataracts were included in this study.
These patients were divided into a training set (271 patients) and a testing set (218 patients).
The IOL power calculated by using SRK/T was less than 10 D.
We evaluated the accuracy of the modified SRK/T-Li formula (P = PSRK/T × 0.
8 + 2 (P = implanted IOL power; PSRK/T = IOL power calculated by SRK/T)).
We evaluated the mean absolute error (MAE), percentage of prediction error (PE) within ± 0.
25, ± 0.
50, and ± 1.
00 D, and the percentage of postoperative hyperopia.
Results The MAE values in order of lowest to highest were as follows: 0.
412 D (SRK/T-Li), 0.
414 D (Barrett Universal II, (BUII)), 0.
814 D (SRK/T), and 1.
039 D (Holladay 1).
The percentage of PE within ± 0.
25 D, ± 0.
50 D, and ± 1.
00 D was 38.
99%, 69.
27% and 92.
66% (BUII), 40.
83%, 69.
27% and 94.
04% (SRK/T-Li), 20.
64%, 41.
28% and 71.
56% (SRK/T), and 7.
34%, 16.
51% and 53.
21% (Holladay 1), respectively.
SRK/T-Li had the smallest postoperative hyperopic shift.
Conclusions For Chinese patients with an IOL power of less than 10 D as calculated by using the SRK/T, the SRK/T-Li has good accuracy and is the best choice to reduce postoperative hyperopic shift.
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