Verma Shwetabh, Hesser Juergen, Mosquera Samuel Arba
Biomedical Engineering Office, Research and Development, SCHWIND Eye-Tech-Solutions, 63801 Kleinostheim, Germany.
Interdisciplinary Center for Scientific Computing (IWR), Heidelberg University, 69117 Heidelberg, Germany.
Vision (Basel). 2023 Jul 14;7(3):50. doi: 10.3390/vision7030050.
Seasonal changes and varying degree of corneal hydration has been linked to excimer laser corneal ablation rates. The use of PMMA as a calibration material in refractive lasers is well established. However, PMMA ablation may be equally affected by seasonal variations in temperature and humidity, in turn affecting the calibration process. The aim of this work is to analyze the effect of seasonal changes in PMMA performance using SCHWIND AMARIS laser system. PET and PMMA ablations conducted in climate-controlled environment with 826 consecutive AMARIS systems manufactured over 6 years were retrospectively analyzed. Lasers were stratified depending on seasons and months of the year. Metrics like single laser pulse fluence, nominal number of laser pulses, mean performance, standard deviation, and technical performance of system were compared to global average values. Cyclic winter-summer variation was confirmed with seasons winter and summer showing statistically significant variations with respect to global values. Metric technical performance showed deeper PMMA ablation performance in summertime, with maximum seasonal deviation of 6%. Results were consistently confirmed in seasonal as well as monthly analyses. These findings could help minimize variance among laser systems by implementing compensation factors depending on seasons such that laser systems installed worldwide follow the same trend line of variation.
季节变化和不同程度的角膜水化与准分子激光角膜消融率有关。在屈光性激光中使用聚甲基丙烯酸甲酯(PMMA)作为校准材料已得到充分认可。然而,PMMA消融可能同样会受到温度和湿度季节性变化的影响,进而影响校准过程。这项工作的目的是使用SCHWIND AMARIS激光系统分析季节变化对PMMA性能的影响。对在气候控制环境下用6年期间生产的826台连续AMARIS系统进行的PET和PMMA消融进行了回顾性分析。根据一年中的季节和月份对激光进行分层。将单激光脉冲能量密度、激光脉冲标称数量、平均性能、标准差和系统技术性能等指标与全球平均值进行比较。证实了冬夏循环变化,冬季和夏季与全球值相比显示出统计学上的显著差异。指标技术性能显示夏季PMMA消融性能更深,最大季节偏差为6%。在季节分析和月度分析中均一致证实了结果。这些发现有助于通过根据季节实施补偿因素来最小化激光系统之间的差异,从而使全球安装的激光系统遵循相同的变化趋势线。