使用三维飞秒激光切削为激光原位角膜磨镶术制作角膜瓣:临床和光学相干断层扫描特征

Optics Pub Date : 2024-05-10 DOI:10.3390/opt5020019
Antonio Leccisotti, Stefania V. Fields, G. De Bartolo, Christian Crudale, Matteo Posarelli
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引用次数: 0

摘要

激光原位角膜磨镶术(LASIK)是最常用的角膜屈光不正手术矫正技术。它需要使用飞秒激光制作浅层铰链角膜瓣,使用准分子激光消融基质床,然后重新定位角膜瓣。角膜瓣的侧切角度可降低角膜瓣脱位和上皮细胞浸润的风险,并赋予角膜独特的生物力学特性。通过比较光学相干断层扫描三维角膜瓣(90°角膜瓣)和二维角膜瓣(锥形角膜瓣)以及各自的术中和术后早期并发症,对使用自定义角度侧切制作三维角膜瓣的新型激光软件进行了回顾性评估。共纳入了四百只连续的眼睛,每组两百只。三维组的平均边缘角度为 92°,手术时间平均缩短 5.2 秒(P = 0)。二维组中有 13 只眼睛和三维组中有 7 只眼睛发现了非肉眼可见的瓣褶皱(p = 0.17)。总之,使用三维飞秒激光切割 LASIK 皮瓣虽然速度稍慢,但安全有效。侧切角度可预测且准确。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creation of a Corneal Flap for Laser In Situ Keratomileusis Using a Three-Dimensional Femtosecond Laser Cut: Clinical and Optical Coherence Tomography Features
Laser in situ keratomileusis (LASIK) is the most frequently used technique for the surgical correction of refractive errors on the cornea. It entails the creation of a superficial hinged corneal flap using a femtosecond laser, ablation of the underlying stromal bed using an excimer laser, and repositioning of the flap. A corneal flap with an angled side cut reduces the risk of flap dislocation and infiltration of epithelial cells and confers unique biomechanical properties to the cornea. A new laser software creating three-dimensional (3D) flaps using a custom angle side cut was retrospectively evaluated, comparing optical coherence tomography 3D (with intended 90° side cut) and 2D flaps (with tapered side cuts) as well as respective intra- and early postoperative complications. Four hundred consecutive eyes were included, two hundred for each group. In the 3D group, the mean edge angle was 92°, and the procedure was on average 5.2 s slower (p = 0). Non-visually significant flap folds were found in thirteen eyes of the 2D group and in seven eyes of the 3D group (p = 0.17). In conclusion, the creation of a LASIK flap using a 3D femtosecond laser cut, although slightly slower, was safe and effective. The side cut angle was predictable and accurate.
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