Savini Giacomo, Hoffer Kenneth J, Shammas H John, Aramberri Jaime, Huang Jinhai, Barboni Piero
J Refract Surg. 2017 Oct 1;33(10):690-695. doi: 10.3928/1081597X-20170721-05.
To investigate the accuracy of the measurements provided by a new optical biometer (OA-2000, Tomey Corporation, Nagoya, Japan) for calculating the intraocular lens (IOL) power and to compare the refractive outcomes to those obtained with the IOLMaster 500 (Carl Zeiss Meditec, Jena, Germany).
In this interventional multicenter study, consecutive patients having cataract surgery were enrolled. Only the IOL model used in the largest sample of patients was selected and the eyes implanted with that IOL were subsequently analyzed. The OA-2000, an optical biometer based on swept-source optical coherence tomography (SS-OCT), was used to measure axial length and corneal power in all eyes. IOL power was calculated with the Hoffer Q, Holladay 1, and SRK/T formulas. In a subsample of eyes, the IOL power was also calculated with measurements obtained by partial coherence interferometry (IOLMaster 500). The median absolute error and percentage of eyes with a prediction error of ±0.50 diopters (D) or less were calculated.
Two hundred forty-nine eyes were analyzed. Using SS-OCT, the median absolute error ranged between 0.33 (Holladay 1) and 0.35 (SRK/T) D. The rate of eyes with a prediction error of ±0.50 D or less ranged between 71.5% (Hoffer Q) and 67.1% (SRK/T). In the subsample of 87 eyes with measurements by both devices, the median absolute error was lower with the OA-2000 (Hoffer Q: P = .0377; Holladay 1: P = .0191; SRK/T: P = .0087).
The SS-OCT-based optical biometer investigated in the current study provides accurate measurements for IOL power calculation and seems to offer more predictable refractive results compared to the partial coherence interferometry IOLMaster. [J Refract Surg. 2017;33(10):690-695.].
研究一种新型光学生物测量仪(OA - 2000,日本名古屋多美公司)用于计算人工晶状体(IOL)度数的测量准确性,并将屈光结果与IOLMaster 500(德国耶拿卡尔蔡司医疗技术公司)获得的结果进行比较。
在这项多中心干预性研究中,纳入了连续接受白内障手术的患者。仅选择在最大患者样本中使用的IOL型号,并随后对植入该IOL的眼睛进行分析。OA - 2000是一种基于扫频光学相干断层扫描(SS - OCT)的光学生物测量仪,用于测量所有眼睛的眼轴长度和角膜屈光力。使用Hoffer Q、Holladay 1和SRK/T公式计算IOL度数。在一部分眼睛的子样本中,还通过部分相干干涉测量法(IOLMaster 500)获得的测量值计算IOL度数。计算绝对误差中位数以及预测误差在±0.50屈光度(D)或更小的眼睛百分比。
分析了249只眼睛。使用SS - OCT时,绝对误差中位数在0.33(Holladay 1)和0.35(SRK/T)D之间。预测误差在±0.50 D或更小的眼睛比例在71.5%(Hoffer Q)和67.1%(SRK/T)之间。在87只由两种设备都进行测量的眼睛子样本中,OA - 2000的绝对误差中位数更低(Hoffer Q:P = 0.0377;Holladay 1:P = 0.0191;SRK/T:P = 0.0087)。
本研究中调查的基于SS - OCT的光学生物测量仪为IOL度数计算提供了准确测量,并且与部分相干干涉测量法的IOLMaster相比,似乎能提供更可预测的屈光结果。[《屈光手术杂志》。2017;33(10):690 - 695。]