首页> 外文期刊>Clinical ophthalmology >Laser-induced corneal cross-linking upon photorefractive ablation with riboflavin
【24h】

Laser-induced corneal cross-linking upon photorefractive ablation with riboflavin

机译:核黄素光折射消融后激光诱导的角膜交联

获取原文
           

摘要

Aim: To estimate the biomechanical effect of the laser-induced cross-linking resulting from photorefractive ablation of the cornea with riboflavin. Methods: Excimer laser ablation studies were performed ex vivo (32 eyes of 16 rabbits) by phototherapeutic keratectomy (PTK) and in vivo (24 eyes of 12 rabbits) by transepithelial photorefractive keratectomy (TransPRK), with and without riboflavin saturation of the stroma. Then, we performed corneal optical coherence tomography on 36 eyes of 18 patients with varying degrees of myopia at different times after the TransPRK was performed with riboflavin saturation of the stroma. Results: Biomechanical testing of corneal samples saturated with riboflavin revealed cross-linking effect accompanied by the increase in tensile strength and maximum strength. PTK?showed increase in tensile strength from 5.1±1.4 to 7.2±1.6 MPa ( P =0.001), while TransPRK showed increase in tensile strength from 8.8±0.9 to 12.8±1.3 MPa ( P =0.0004). Maximum strength increased from 8.7±2.5 to 12.0±2.8 N ( P =0.005) in PTK and from 12.8±1.6 to 18.3±1.2 N ( P =0.0004) in TransPRK. Clinical optical coherence tomography studies of the biomicroscopic transparent cornea at different times after TransPRK showed increased density in the surface layers of the stroma and membrane-like structure beneath the epithelium. Conclusion: Photorefractive ablation of the preliminary corneal stroma saturation with riboflavin causes the effect of laser-induced cross-linking, which is attended with an increase in corneal tensile strength, maximum strength, increased density in the surface layers of the stroma, and formation of a membrane-like structure beneath the epithelium after TransPRK.
机译:目的:评估由核黄素与核黄素的光折射消融导致的激光诱导的交联的生物力学作用。方法:采用光疗角膜切除术(PTK)进行离体(16只兔32眼)和经上皮光折射角膜切除术(TransPRK)体内(12只兔24眼)进行准分子激光消融研究,有无核黄素饱和。然后,我们对18例不同程度近视的患者的36只眼在不同时间进行了角膜黄素饱和度的TransPRK手术后,进行了角膜光学相干断层扫描。结果:用核黄素饱和的角膜样品的生物力学测试显示出交联作用,同时抗张强度和最大强度增加。 PTK 2的抗拉强度从5.1±1.4 MPa增加到7.2±1.6 MPa(P = 0.001),而TransPRK的抗拉强度从8.8±0.9 MPa增加到12.8±1.3 MPa(P = 0.0004)。在PTK中,最大强度从8.7±2.5 N增加到12.0±2.8 N(P = 0.005),在TransPRK中,最大强度从12.8±1.6增加到18.3±1.2 N(P = 0.0004)。在TransPRK之后的不同时间对生物显微透明角膜进行的临床光学相干断层扫描研究显示,基质表面层的密度增加,上皮下的膜样结构也增加。结论:核黄素对角膜基质初步饱和的光折变消融会产生激光诱导的交联效应,并伴随着角膜抗张强度的增加,最大强度的增加,基质表面层密度的增加以及角膜基质的形成。 TransPRK后上皮下的膜状结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号