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Biomechanical Changes to the Cornea from LASIK Flap Creation Resulting in Inaccurate Ablations and Suboptimal Refractive Outcomes with Topographic-Guided Ablation

机译:来自Lasik Plap Creation的角膜的生物力学变化,导致了与地形烧蚀的不准确的消融和次优屈光结果

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Purpose: This study documents a biomechanical corneal change related to corneal flap creation in certain patients leading to an irregular ablation pattern and an inaccurate refractive outcome. Methods: This retrospective study included consecutive eyes treated with primary 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 greater than or equal to 0.50 diopters (D) sphere or cylinder from the targeted goal within 3 months after surgery were identified. Topographical, higher order aberration, and epithelial maps were created. Of these eyes, approximately 10% of eyes were found to have undergone a biomechanical change upon flap creation that led to an inaccurate outcome. Results: Six representative cases are presented that demonstrate the biomechanical change, outcomes, and treatment. All patients demonstrated an elliptical, irregular ablation pattern on post-operative topography, lateralized the thinnest point of the cornea relative to the corneal apex on Pentacam pachymetry maps, and irregular corneal epithelial thickening at the periphery of the elliptical ablation. Conclusion: A biomechanical change during flap creation can occur in certain types of corneas during LASIK flap creation and subsequent treatment with topographic-guided ablation leading to an irregular ablation and suboptimal refractive outcomes.
机译:目的:本研究记录了与某些患者的角膜皮瓣创造有关的生物力学角膜变化,导致不规则烧蚀模式和不准确的屈光结果。方法:该回顾性研究包括使用LASIK Contoura使用LASTA方案治疗的连续眼睛。所有LASIK程序都在Waplight EX500准分子激光器上进行。使用Alcon Waplight FS200 Femtosecond激光器或Moria M2 Microkatome使用襟翼。鉴定了识别手术后3个月内从靶向目标的大于或等于0.50屈光度(D)球体或圆柱的眼睛。创建了地形,更高阶的像差和上皮地图。在这些眼睛中,发现大约10%的眼睛在导致不准确的结果时经过生物力学变化。结果:提出了六种代表性病例,证明了生物力学变化,结果和治疗。所有患者展示了术后地形上的椭圆形不规则的消融模式,侧向角膜的最薄点相对于偏见的偏曲克烟斗映射上的角膜顶点,以及在椭圆烧蚀的周边处的不规则角膜上皮增厚。结论:在Lasik Plap创建过程中,在某些类型的角膜中发生皮瓣的生物力学变化和随后的地形引导消融导致不规则消融和次优屈光结果。

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