Kanellopoulos Anastasios John, Asimellis George
J Refract Surg. 2015 Mar;31(3):164-9. doi: 10.3928/1081597X-20150225-01.
To objectively define the effective centration of myopic femtosecond laser-assisted LASIK ablation pattern, evaluate the difference between achieved versus planned excimer laser ablation centration, and compare these results from two different generations of an excimer laser system.
The study retrospectively evaluated 280 eyes subjected to myopic LASIK. Digital image analysis was performed on Scheimpflug sagittal curvature maps (difference of preoperative to postoperative). Centration was assessed via proprietary software digital analysis of the coordinate displacement between the achieved ablation geometric center and the planned ablation center, which was the corneal vertex. Results from two different excimer laser generations (Eye-Q 400 [140 eyes] and EX500 [140 eyes]; Alcon/WaveLight, Fort Worth, TX) were compared.
Radial displacement was on average 360 ± 220 µm (range: 0 to 1,030 µm) in the Eye-Q 400 laser group and 120 ± 110 µm (range: 0 to 580 µm) in the EX500 laser group (P < .01). The percentage of eyes with displacement of greater than 300 µm was 52% in the Eye-Q 400 laser group and 4% in the EX500 laser group.
Displacement of ablation pattern may depend on the laser platform used. The improvement in the efficiency of centration indicates that newer generation excimer lasers with faster eye tracking and active centration control appear to achieve a significantly more accurate centration of myopic ablation patterns. The authors propose this novel, objective technique for laser refractive surgeon evaluation may point out significant outcome measures not currently used in standard metrics of refractive laser efficiency.
客观确定近视飞秒激光辅助准分子原位角膜磨镶术(LASIK)消融模式的有效中心定位,评估实际准分子激光消融中心与计划中心之间的差异,并比较两代不同准分子激光系统的这些结果。
本研究回顾性评估了280只接受近视LASIK手术的眼睛。对Scheimpflug矢状曲率图(术前与术后差异)进行数字图像分析。通过专有软件对实际消融几何中心与计划消融中心(即角膜顶点)之间的坐标位移进行数字分析来评估中心定位。比较了两代不同准分子激光(Eye-Q 400 [140只眼]和EX500 [140只眼];爱尔康/威视光,得克萨斯州沃思堡)的结果。
Eye-Q 400激光组的径向位移平均为360±220 µm(范围:0至1030 µm),EX500激光组为120±110 µm(范围:0至580 µm)(P <.01)。位移大于300 µm的眼睛在Eye-Q 400激光组中占52%,在EX500激光组中占4%。
消融模式的位移可能取决于所使用的激光平台。中心定位效率的提高表明,具有更快眼动追踪和主动中心定位控制的新一代准分子激光似乎能显著更准确地实现近视消融模式的中心定位。作者提出,这种用于评估激光屈光手术医生的新颖客观技术可能指出了目前屈光激光效率标准指标中未使用的重要结果测量方法。