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Effects of posterior corneal astigmatism on the accuracy of AcrySof toric intraocular lens astigmatism correction 被引量:5
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作者 Bin Zhang Jing-Xue Ma +4 位作者 Dan-Yan Liu cong-rong guo Ying-Hua Du Xiu-Jin guo Yue-Xian Cui 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2016年第9期1276-1282,共7页
AIM:To evaluate the effects of posterior corneal surface measurements on the accuracy of total estimated corneal astigmatism.METHODS:Fifty-seven patients with toric intraocular lens(IOL) implantation and posterior... AIM:To evaluate the effects of posterior corneal surface measurements on the accuracy of total estimated corneal astigmatism.METHODS:Fifty-seven patients with toric intraocular lens(IOL) implantation and posterior corneal astigmatism exceeding 0.5 diopter were enrolled in this retrospective study.The keratometric astigmatism(KA) and total corneal astigmatism(TA) were measured using a Pentacam rotating Scheimpflug camera to assess the outcomes of AcrySof IOL implantation.Toric lOLs were evaluated in 26 eyes using KA measurements and in 31 eyes using TA measurements.Preoperative corneal astigmatism and postoperative refractive astigmatism were recorded for statistical analysis.The cylindrical power of toric lOLs was estimated in all eyes.RESULTS:In all cases,the difference of toric IOL astigmatism magnitude between KA and TA measurements for the estimation of preoperative corneal astigmatism was statistically significant.Of a total of 57 cases,the 50.88%decreased from Tn to Tn-1 and 10.53%decreased from Tn to Tn-2.In all cases,5.26%increased from Tn to Tn+1.The mean postoperative astigmatism within the TA group was significantly lower than that in the KA group.CONCLUSION:The accuracy of total corneal astigmatism calculations and the efficacy of toric IOL correction can be enhanced by measuring both the anterior and posterior corneal surfaces using a Pentacam rotating Scheimpflug camera. 展开更多
关键词 CORNEA ASTIGMATISM CATARACT intraocular lenses refractive errors rotating Scheimpflug camera
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Optical performance of toric intraocular lenses in the presence of decentration 被引量:2
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作者 Bin Zhang Jin-Xue Ma +3 位作者 Dan-Yan Liu Ying-Hua Du cong-rong guo Yue-Xian Cui 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2015年第4期730-735,共6页
· AIM: To evaluate the optical performance of toric intraocular lenses(IOLs) after decentration and with different pupil diameters, but with the IOL astigmatic axis aligned.· METHODS: Optical performances of... · AIM: To evaluate the optical performance of toric intraocular lenses(IOLs) after decentration and with different pupil diameters, but with the IOL astigmatic axis aligned.· METHODS: Optical performances of toric T5 and SN60 AT spherical IOLs after decentration were tested on a theoretical pseudophakic model eye based on the Hwey-Lan Liou schematic eye using the Zemax ray-tracing program. Changes in optical performance were analyzed in model eyes with 3-mm, 4-mm, and 5-mm pupil diameters and decentered from 0.25 mm to 0.75 mm with an interval of 5° at the meridian direction from0° to 90°. The ratio of the modulation transfer function(MTF) between a decentered and a centered IOL(MTFDecentration/MTFCentration) was calculated to analyze the decrease in optical performance.· RESULTS: Optical performance of the toric IOL remained unchanged when IOLs were decentered in any meridian direction. The MTFs of the two IOLs decreased,whereas optical performance remained equivalent after decentration. The MTFDecentration/MTFCentrationratios of the IOLs at a decentration from 0.25 mm to 0.75 mm were comparable in the toric and SN60 AT IOLs. After decentration, MTF decreased further, with the MTF of the toric IOL being slightly lower than that of the SN60 AT IOL. Imaging qualities of the two IOLs decreased when the pupil diameter and the degree of decentration increased, but the decrease was similar in the toric and spherical IOLs.· CONCLUSION: Toric IOLs were comparable to spherical IOLs in terms of tolerance to decentration at the correct axial position. 展开更多
关键词 LENS artificial ASTIGMATISM CORNEA DECENTRATION MODEL
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