Motwani Manoj
Motwani LASIK Institute, San Diego, CA 92121, USA.
Clin Ophthalmol. 2020 Nov 13;14:3841-3854. doi: 10.2147/OPTH.S267091. eCollection 2020.
This study analyzes every eye that had an outcome greater than 0.25D of sphere or astigmatism from planned goal after treatment with WaveLight Contoura with LYRA Protocol.
The study included 266 consecutive eyes treated with LASIK Contoura using the LYRA Protocol. All LASIK procedures were performed on the WaveLight EX500 excimer laser. Flaps were created with either the Alcon WaveLight FS200 femtosecond laser or the Moria M2 microkeratome. Eyes that were off by >0.25 diopters (D) sphere or cylinder from the targeted goal within 3 months after surgery were identified and analyzed for cause. Topographical, higher-order aberration, and epithelial maps were created.
Causes for inaccurate outcomes were biomechanical corneal change from LASK flap creation (9.78% of total eyes), pre-operative epithelial compensation of corneal higher-order aberration (4.1% of total eyes), changes to lamellar corneal tension from laser ablation causing a hyperopic shift (1.9% of total eyes), epithelial thickening over the ablation area post-operatively causing a refractive change (1.5% of total eyes), and posterior astigmatism (0.75%).
The causes of the majority of inaccurate outcomes have not been properly defined and must be incorporated into further improving outcomes. Current and planned advances in technology do not address the majority of these causes.
本研究分析了使用LYRA方案的威视康Contoura治疗后,球镜或散光结果比计划目标超出大于0.25D的每只眼睛。
该研究纳入了266只连续接受使用LYRA方案的LASIK Contoura治疗的眼睛。所有LASIK手术均在威视EX500准分子激光上进行。使用爱尔康威视FS200飞秒激光或Moria M2微型角膜刀制作角膜瓣。识别并分析术后3个月内球镜或柱镜偏离目标值大于0.25屈光度(D)的眼睛的原因。创建地形图、高阶像差图和上皮细胞图。
结果不准确的原因包括LASIK角膜瓣制作引起的生物力学角膜变化(占总眼数的9.78%)、术前角膜高阶像差的上皮细胞代偿(占总眼数的4.1%)、激光消融导致角膜板层张力变化引起的远视偏移(占总眼数的1.9%)、术后消融区域上皮增厚引起的屈光变化(占总眼数的1.5%)以及后散光(0.75%)。
大多数结果不准确的原因尚未得到恰当界定,必须纳入进一步改善结果的考量中。当前和计划中的技术进步并未解决这些原因中的大多数。