首页> 外文期刊>British journal of ophthalmology >Improving refractive outcomes at extreme axial lengths with the IOLMaster: the optical axial length and keratometric transformation.
【24h】

Improving refractive outcomes at extreme axial lengths with the IOLMaster: the optical axial length and keratometric transformation.

机译:使用IOLMaster可改善极端轴向长度的屈光结果:光学轴向长度和角膜曲率转换。

获取原文
获取原文并翻译 | 示例
       

摘要

AIMS: To optimise the relationship between the actual and predicted refractive outcomes following phacoemulsification and axial length of the eye. Four intraocular lens (IOL) power calculation formulae were compared: SKR-T, Holladay I, Hoffer-Q and Haigis. Optical axial length transformation based on the original calibration of the IOLMaster was tested to improve the predictability of outcomes. METHODS: The refractive outcomes of 155 eyes of 120 patients using the IOLMaster were reviewed following phacoemulsification. After optimising the IOL constants, the prediction error (PE; achieved spherical equivalent - calculated spherical equivalent) of each of the formulae was calculated for each eye and then correlated to the axial length of the eye with and without the optical transformation. Keratometry measurements of the IOLMaster were tested by transforming to that of standard autokeratometry. This was validated in a second group of 90 eyes. RESULTS: The PE of all but the Haigis triple optimised formula were found to be positively correlated to the axial length. The optical and keratometric transformation statistically significantly reduced this correlation, leading to fewer PE at all axial lengths. PE per millimetre axial length was 0.06 D/mm (SRK-T), 0.16 D/mm (Hoffer-Q), 0.14 D/mm (Holladay I), 0.11 D/mm (Haigis single) and -0.02 D/mm (Haigis triple). Following transformation, best case PE was reduced to -0.01 D/mm (SRK-T), 0.08 D/mm (Hoffer-Q), 0.01 D/mm (Holladay I), 0.01 D/mm (Haigis single) and -0.01 D/mm (Haigis triple). CONCLUSION: Transforming the IOLMaster measurement into the optical axial length while compensating for its keratometry measurement was able to improve the predictability of outcomes at extreme axial lengths without further modification to the standard IOL formulae.
机译:目的:优化超声乳化后眼睛的实际和预测屈光结果与眼轴长度之间的关系。比较了四个人工晶状体(IOL)屈光度计算公式:SKR-T,Holladay I,Hoffer-Q和Haigis。测试了基于IOLMaster原始校准的光轴长度转换,以提高结果的可预测性。方法:在超声乳化术后,回顾了使用IOLMaster的120例患者的155眼屈光结果。优化IOL常数后,针对每只眼睛计算每个公式的预测误差(PE;已实现的球面等效-计算的球面等效值),然后将其与有或没有光学转换的眼睛的轴向长度相关联。通过转换为标准自动角膜测定法来测试IOLMaster的角膜测定法测量。第二组90只眼睛对此进行了验证。结果:除Haigis三重优化公式外,所有PE均与轴向长度呈正相关。光学和角膜塑形术统计学上显着降低了这种相关性,导致在所有轴向长度上的PE更少。每毫米轴向长度的PE为0.06 D / mm(SRK-T),0.16 D / mm(Hoffer-Q),0.14 D / mm(Holladay I),0.11 D / mm(Haigis single)和-0.02 D / mm(海吉斯(Haigis Triple)。转换后,最佳情况下的PE降低至-0.01 D / mm(SRK-T),0.08 D / mm(Hoffer-Q),0.01 D / mm(Holladay I),0.01 D / mm(Haigis single)和-0.01 D / mm(海吉斯三重)。结论:将IOLMaster测量值转换为光轴长度,同时补偿其角膜测量法测量值,无需进一步修改标准IOL公式即可提高极端轴向长度下结果的可预测性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号