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High Agreement between Barrett Universal II Calculations with and without Utilization of Optional Biometry Parameters

机译:Barret Universal II之间的高协议无需使用可选的生物谱参数

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Purpose: To examine the contribution of anterior chamber depth (ACD), lens thickness (LT), and white-to-white (WTW) measurements to intraocular lens (IOL) power calculations using the Barrett Universal II (BUII) formula. Methods: Measurements taken with the IOLMaster 700 (Carl Zeiss, Meditec AG, Jena, Germany) swept-source biometry of 501 right eyes of 501 consecutive patients undergoing cataract extraction surgery between January 2019 and March 2020 were reviewed. IOL power was calculated using the BUII formula, first through the inclusion of all measured variables and then by using partial biometry data. For each calculation method, the IOL power targeting emmetropia was recorded and compared for the whole cohort and stratified by axial length (AL) of the measured eye. Results: The mean IOL power calculated for the entire cohort using all available parameters was 19.50 ± 5.11 diopters (D). When comparing it to the results obtained by partial biometry data, the mean absolute difference ranged from 0.05 to 0.14 D; p < 0.001. The optional variables (ACD, LT, WTW) had the least effect in long eyes (AL ≥ 26 mm; mean absolute difference ranging from 0.02 to 0.07 D; p < 0.001), while the greatest effect in short eyes (AL ≤ 22 mm; mean absolute difference from 0.10 to 0.21 D; p < 0.001). The percentage of eyes with a mean absolute IOL dioptric power difference more than 0.25 D was the highest (32.0%) among the short AL group when using AL and keratometry values only. Conclusions: Using partial biometry data, the BUII formula in small eyes (AL ≤ 22 mm) resulted in a clinically significant difference in the calculated IOL power compared to the full biometry data. In contrast, the contribution of the optional parameters to the calculated IOL power was of little clinical importance in eyes with AL longer than 22 mm.
机译:目的:使用Barret Universal II(Buii)公式来检查前室深度(ACD),透镜厚度(LT),透镜厚度(LT)和白色(WTW)功率计算的贡献。方法:用Iolmaster 700(Carl Zeiss,Meditec Ag,Jen​​a,Germany)进行的测量扫描 - 源生物测量术501次右眼右眼是在2019年1月至2020年1月间在2019年1月至2020年1月间接受白内障提取手术的501名右眼。使用BUII公式计算IOL电源,首先通过包含所有测量的变量,然后使用部分生物学数据来计算。对于每种计算方法,记录靶向Emmetropaia的IOL功率功率,并将其与整个坐姿进行比较,并通过测量眼的轴向长度(Al)分层。结果:使用所有可用参数为整个队列计算的平均IOL功率为19.50±5.11屈光度(D)。当将其与部分生物法数据获得的结果进行比较时,平均绝对差范围为0.05至0.14d; P <0.001。可选变量(ACD,LT,WTW)在长眼睛(Al≥26mm;平均值为0.02至0.07 d; p <0.001),而短眼睛(Al≤22mm)的最大效果;平均值为0.10至0.21 d的绝对差异; p <0.001)。仅使用Al和角膜术值的短AL组中,具有大于0.25d的平均绝对IOL屈光功率差异的眼睛的百分比是最高的(32.0%)。结论:使用部分生物学数据,小眼(Al≤22mm)中的Buii公式导致计算的IOL功率临床上有显着差异,与完整的生物学数据相比。相比之下,可选参数对计算的IOL功率的贡献在于长度超过22毫米的眼睛中的临床重要性几乎没有临床重要性。

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