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首页> 外文期刊>Investigative ophthalmology & visual science >Influence of corneal collagen crosslinking with riboflavin and ultraviolet-a irradiation on excimer laser surgery.
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Influence of corneal collagen crosslinking with riboflavin and ultraviolet-a irradiation on excimer laser surgery.

机译:核黄素和紫外线照射对角膜胶原的交联对准分子激光手术的影响。

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PURPOSE: Riboflavin/ultraviolet A (UVA) cross-linking (CXL) of corneal collagen is a novel method of stabilizing corneal mechanical properties and preventing progression of keratectasias. This study was conducted to investigate whether CXL influences ablation rate, flap thickness, and refractive results of excimer laser procedures ex vivo. METHODS: Corneal epithelium was removed from enucleated porcine eyes, and CXL was performed with riboflavin 0.1% and UVA radiation (365 nm, 3 mW/cm(2)) for 30 minutes. Control eyes received epithelial abrasion only. Diffusion of riboflavin through the cornea was assessed by using infrared-excited, two-photon microscopy of riboflavin autofluorescence, combined with second-harmonic generation of fibrillar collagen. During phototherapeutic keratectomy, corneal thickness was measured by optical coherence pachymetry. During LASIK for myopia, the flap thickness of microkeratome cuts was measured and the induced refractive change assessed by Placido topography. Data were analyzed by Shapiro-Wilk test and Student's t-test. RESULTS: Multiphoton imaging showed a rapid (30-minute) and even distribution of riboflavin throughout the corneal stroma. No difference in ablation rate was measured in treated and untreated corneas (P = 0.90). Mean flap thickness was increased by 44% in cross-linked corneas (P < 0.01). After LASIK for myopia of 4 to 25 D, the mean corneal refractive change was reduced in CXL-treated eyes by 20.1% (P < 0.05). This effect was less pronounced in thinner flaps. CONCLUSIONS: CXL reduces the amount of refractive change after LASIK for myopia. Although the laser ablation rate is unaffected, CXL results in an increased flap thickness. This study suggests the need for adjustment of microkeratome and laser parameters for LASIK after CXL and indirectly endorses the theory of a direct stiffening effect of CXL.
机译:目的:角膜胶原的核黄素/紫外线A(UVA)交联(CXL)是稳定角膜机械特性并防止角化发展的一种新方法。进行这项研究是为了研究CXL是否会影响准分子激光离体的消融率,皮瓣厚度和屈光结果。方法:从去核猪的眼睛中去除角膜上皮,并用0.1%的核黄素和UVA辐射(365 nm,3 mW / cm(2))进行CXL 30分钟。对照眼睛仅接受上皮擦伤。通过使用核黄素自发荧光的红外激发双光子显微镜结合二次谐波生成原纤维胶原蛋白来评估核黄素在角膜中的扩散。在光疗性角膜切除术期间,通过光学相干测厚法测量角膜厚度。在用于近视的LASIK手术期间,测量了微角膜刀切口的皮瓣厚度,并通过Placido地形图评估了诱发的屈光变化。通过Shapiro-Wilk检验和St​​udent's t检验分析数据。结果:多光子成像显示核黄素在整个角膜基质中快速(30分钟)均匀分布。在治疗和未治疗的角膜中,消融率均无差异(P = 0.90)。在交联的角膜中,平均皮瓣厚度增加了44%(P <0.01)。 LASIK手术治疗4至25 D的近视后,经CXL治疗的眼睛的平均角膜屈光变化降低了20.1%(P <0.05)。在较薄的皮瓣中这种作用不太明显。结论:CXL可减少近视患者LASIK术后屈光改变的数量。尽管激光烧蚀率不受影响,但是CXL会导致瓣膜厚度增加。这项研究表明,在CXL后需要调整LASIK的微角膜刀和激光参数,并间接支持CXL直接加劲作用的理论。

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